Jose L. Lado

Publications

A complete and continuously updated list is also on Google Scholar and arXiv.

170 research papers, published and preprints.

2026

  1. 1) Topology and criticality in non-Hermitian multimodal optical resonators through engineered losses Elizabeth Louis Pereira, Hongwei Li, Andrea Blanco-Redondo, Jose L. Lado Phys. Rev. Research 8, 033132 (2026) arXiv
  2. 2) Quantum circuit algorithm for topological invariants of second-order topological many-body quantum magnets Sebastián Domínguez-Calderón, Marcel Niedermeier, Jose L. Lado, Pascal M. Vecsei Phys. Rev. B 114, 065139 (2026) arXiv
  3. 3) Cross-Platform Autonomous Control of Minimal Kitaev Chains David van Driel, Rouven Koch, Vincent P. M. Sietses, Sebastiaan L. D. ten Haaf, Chun-Xiao Liu, Francesco Zatelli, Bart Roovers, Alberto Bordin, Nick van Loo, Guanzhong Wang, Jan Cornelis Wolff, Grzegorz P. Mazur, Tom Dvir, Ivan Kulesh, Qingzhen Wang, A. Mert Bozkurt, Sasa Gazibegovic, Ghada Badawy, Erik P. A. M. Bakkers, Michael Wimmer, Srijit Goswami, Jose L. Lado, Leo P. Kouwenhoven, Eliska Greplova PRX Intelligence 1, 013005 (2026) arXiv
  4. 4) Parity-dependent double degeneracy and spectral statistics in the projected dice lattice Koushik Swaminathan, Anouar Moustaj, Jose L. Lado, Sebastiano Peotta Phys. Rev. B 114, L051108 (2026) arXiv
  5. 5) Machine-learning-enabled characterization of individual ring resonators in integrated photonic lattices Elizabeth Louis Pereira, Amin Hashemi, Faluke Aikebaier, Hongwei Li, Jose L. Lado, Andrea Blanco-Redondo APL Photonics 11, 076124 (2026)
  6. 6) Electrical Control of Altermagnetism in a Quasi-1D Magnet Alberto M. Ruiz, Cuiju Yu, Diego López-Alcalá, Jose L. Lado, Adolfo O. Fumega, José J. Baldoví arXiv:2607.16856v1
  7. 7) Emergent ferromagnetism in the NiI2-NbSe2 van der Waals heterostructure Büşra Gamze Arslan, Mohammad Amini, Ziying Wang, Alessandro Orsini, Jose L. Lado, Adolfo O. Fumega, Robert Drost, Peter Liljeroth arXiv:2607.21218v1
  8. 8) Interaction-driven electronic ferroelectricity in van der Waals heterostructures Ziying Wang, Ana Vera Montoto, Mohammad Amini, Yuxiao Ding, Jose L. Lado, Robert Drost, Adolfo O. Fumega, Peter Liljeroth arXiv:2607.24087v1
  9. 9) Tensor network solvers for ultra-large tight-binding Hamiltonians: algorithms and applications Tiago V. C. Antão, Anouar Moustaj, Yitao Sun, Jose L. Lado arXiv:2607.00991v2
  10. 10) Observation of tunable chiral spin textures with nonlinear optics Youqiang Huang, Tiago V. C. Antão, Adolfo O. Fumega, Mikko Turunen, Yi Zhang, Hanlin Fang, Nianze Shang, Juan C. Arias-Muñoz, Fedor Nigmatulin, Hao Hong, Andrew S. Kim, Faisal Ahmed, Hyunyong Choi, Sanshui Xiao, Kaihui Liu, Jose L. Lado, Zhipei Sun Nature Communications 17, 7576 (2026) arXiv
  11. 11) Tensor network approach to momentum-resolved spectroscopy in nonperiodic super-moiré systems Anouar Moustaj, Yitao Sun, Tiago V. C. Antão, Jose L. Lado Phys. Rev. Research 8, 023282 (2026) arXiv
  12. 12) Learning Inhomogeneous Heisenberg Hamiltonians in Nanographene Spin Chains Greta Lupi, Saketh Ravuri, Chenxiao Zhao, Weidan Zhang, Cesare Roncaglia, Renxiang Liu, Xinliang Feng, Daniele Passerone, Pascal Ruffieux, Roman Fasel, Jose L. Lado, Gonçalo Catarina arXiv:2606.29281v1
  13. 13) Real-space spectral functions of three-dimensional billion-size topological non-Hermitian matter with tensor networks Yitao Sun, Jose L. Lado, Guangze Chen arXiv:2606.16424v2
  14. 14) Tensor network method for real-space topology in quasicrystal Chern mosaics Tiago V. C. Antão, Yitao Sun, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Lett. 136, 156601 (2026) arXiv
  15. 15) Solving the Gross-Pitaevskii equation on multiple different scales using the quantics tensor train representation Marcel Niedermeier, Adrien Moulinas, Thibaud Louvet, Jose L. Lado, Xavier Waintal Phys. Rev. Research 8, 023006 (2026) arXiv
  16. 16) Hamiltonian learning for spin-spiral moiré magnets from electronic magnetotransport Fedor Nigmatulin, Greta Lupi, Jose L. Lado, Zhipei Sun arXiv:2604.02959
  17. 17) Intrinsic i-wave altermagnetism in 2D graphene superlattices Cuiju Yu, Jose L. Lado arXiv:2604.19661
  18. 18) Moire Mott correlated mosaics in twisted bilayer 1T-TaS2 Ana Vera Montoto, Jose L. Lado, Adolfo O. Fumega arXiv:2604.02001
  19. 19) Atomically Reconfigurable Single-Molecule Optoelectronics Atif Ghafoor, Santeri Neuvonen, Thinh Tran, Oscar Moreno Segura, Yitao Sun, Yaroslav Pavlyukh, Riku Tuovinen, Jose L. Lado, Shawulienu Kezilebieke arXiv:2603.29286
  20. 20) Tensor-network methodology for super-moiré excitons beyond one billion sites Anouar Moustaj, Yitao Sun, Tiago V. C. Antão, Lumen Eek, Jose L. Lado arXiv:2603.02011
  21. 21) Roadmap on nanoscale superconductivity for quantum technologies Oleksandr Dobrovolskiy, Hermann Suderow, Francesco Tafuri, Annica M. Black-Schaffer, Jose L. Lado, Asle Sudbø, Daniela Stornaioulo, Chuan Li, Anna E. Böhmer, Lan Maria Tran, Andrzej J. Zaleski, Adrian Crisan, Massimiliano Polichetti, Armando Galluzzi, Ali Gencer, Bernd Aichner, Neven Barišić, Wolfgang Lang, Tomas Samuely, Martin Gmitra, Tristan Cren, Mateo Calandra, Peter Samuely, Jeroen Custers, Rosa Córdoba, Vladimir M. Fomin, Nicola Poccia, Pavol Szabó, Fabrizio Porrati, Gleb Kakazei, Jan Aarts, Jason Robinson, Javier E. Villegas, Matthias Althammer, Hans Huebl, Akashdeep Kamra, Mathias Weiler, J. Hugo Dil, Daniil Evtushinsky, Beena Kalisky, Yonathan Anahory, Simon Bending, Peter Liljeroth, Abdou Hassanien, Isabel Guillamón, Edwin Herrera, Alejandro V. Silhanek, Joris Van de Vondel, Anna Palau, Ilya Charaev, Maria Sidorova, Floriana Lombardi, Thilo Bauch, Cheryl Feuillet-Palma, Vasily Stolyarov, Dimitri Roditchev, Vladimir M. Krasnov, Benedikt Hampel, María José Martínez-Pérez, Javier Sesé, Dieter Koelle, Stefano Poletto, Alessandro Bruno, Davide Massarotti Superconductor Science and Technology 39, 023502 (2026)
  22. 22) Strain-induced two-dimensional topological crystalline insulator Liwei Jing, Mohammad Amini, Adolfo O. Fumega, Orlando J. Silveira, Jose L. Lado, Peter Liljeroth, Shawulienu Kezilebieke Nature Communications 17, 817 (2026) arXiv
  23. 23) Coupling of Klein-Andreev Resonant States in BiSrCaCuO-graphene-BiSrCaCuO Devices Sharadh Jois, Jose L. Lado, Genda Gu, Qiang Li, Ji Ung Lee Phys. Rev. B 113, 035410 (2026) arXiv
  24. 24) Fingerprinting superconductors by disentangling Andreev and quasiparticle currents across tunable tunnel junctions Petro Maksymovych, Sang Yong Song, Benjamin Lawrie, Wonhee Ko, Jose L. Lado arXiv:2601.20798
  25. 25) Molecular Hamiltonian learning from setpoint-dependent scanning tunneling spectroscopy Greta Lupi, Adolfo O. Fumega, Mohammad Amini, Robert Drost, Peter Liljeroth, Jose L. Lado arXiv:2601.19371v1

2025

  1. 26) Self-consistent tensor network method for correlated super-moiré matter beyond one billion sites Yitao Sun, Marcel Niedermeier, Tiago V. C. Antão, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Research 7, 043288 (2025) arXiv
  2. 27) Atomic-scale probe of molecular magneto-electric coupling Mohammad Amini, Linghao Yan, Orlando J. Silveira, Adolfo O. Fumega, Viliam Vaňo, Jose L. Lado, Shawulienu Kezilebieke, Peter Liljeroth, Robert Drost arXiv:2512.07489v1
  3. 28) Transfer learning of many-body electronic correlation entropy from local measurements Faluke Aikebaier, Teemu Ojanen, Jose L. Lado Phys. Rev. Applied 24, 054014 (2025) arXiv
  4. 29) Controllable Superconductivity in Suspended van der Waals Materials Ruihuan Fang, Cuiju Yu, Youqiang Huang, Tosson Elalaily, Yuvraj Chaudhry, Yaoqiang Zhou, Andres Castellanos-Gomez, Sanshui Xiao, Jiwon Park, Hyunyong Choi, Fida Ali, Hanlin Fang, Jose L. Lado, Pertti Hakonen, Zhipei Sun arXiv:2511.05763
  5. 30) Moiré modulated quantum spin liquid candidate 1T-TaSe2 Ziying Wang, Adolfo O. Fumega, Ana Vera Montoto, Mohammad Amini, Büşra Gamze Arslan, Aleš Cahlík, Yuxiao Ding, Jose L. Lado, Robert Drost, Peter Liljeroth arXiv:2511.03311
  6. 31) Hamiltonian learning quantum magnets with dynamical impurity tomography Netta Karjalainen, Greta Lupi, Rouven Koch, Adolfo O. Fumega, Jose L. Lado arXiv:2510.18613
  7. 32) Observation of electromagnons in a monolayer multiferroic Mohammad Amini, Tiago V. C. Antão, Liwei Jing, Ziying Wang, Antti Karjasilta, Robert Drost, Shawulienu Kezilebieke, Jose L. Lado, Adolfo O. Fumega, Peter Liljeroth arXiv:2510.08253
  8. 33) Hamiltonian learning of triplon excitations in an artificial nanoscale molecular quantum magnet Rouven Koch, Robert Drost, Peter Liljeroth, Jose L. Lado Nano Letters 25, 36, 13435-13440 (2025) arXiv
  9. 34) Multiferroic nematic d-wave altermagnetism driven by orbital-order on the honeycomb lattice Luigi Camerano, Adolfo O. Fumega, Jose L. Lado, Alessandro Stroppa, Gianni Profeta npj 2D Materials and Applications 9, 75 (2025) arXiv
  10. 35) Observation of non-Hermitian topology from optical loss modulation Amin Hashemi, Elizabeth Louis Pereira, Hongwei Li, Jose L. Lado, Andrea Blanco-Redondo Nature Materials 24, 1393-1399 (2025) arXiv
  11. 36) Electrical probe of spin-spiral order in quantum spin Hall/spin-spiral magnet van der Waals heterostructures Fedor Nigmatulin, Jose L. Lado, Zhipei Sun Phys. Rev. B 112, 024430 (2025) arXiv
  12. 37) Frustration-Induced Many-Body Degeneracy in Spin −1/2 Molecular Quantum Rings Donglin Li, Nan Cao, Marvin Metzelaars, Orlando J Silveira, Joakim Jestilä, Adolfo Fumega, Tomohiko Nishiuchi, Jose Lado, Adam S Foster, Takashi Kubo, Shigeki Kawai J. Am. Chem. Soc., 147, 30, 26208–26217 (2025)
  13. 38) Roadmap on quantum magnetic materials Antonija Grubišić-Čabo, Marcos H. D. Guimarães, Dmytro Afanasiev, Jose H. Garcia Aguilar, Irene Aguilera, Mazhar N. Ali, Semonti Bhattacharyya, Yaroslav M. Blanter, Rixt Bosma, Zhiyuan Cheng, Zhiying Dan, Saroj P. Dash, Joaquín Medina Dueñas, Joaquín Fernández-Rossier, Marco Gibertini, Sergii Grytsiuk, Maurits J. A. Houmes, Anna Isaeva, Chrystalla Knekna, Arnold H. Kole, Samer Kurdi, Jose Lado, Samuel Mañas-Valero, J. Marcelo J. Lopes, Damiano Marian, Mengxing Na, Falk Pabst, Sergio Barquero Pierantoni, Mexx Regout, Riccardo Reho, Malte Rösner, David Sanz, Toeno van der Sar, Jagoda Sławińska, Matthieu J. Verstraete, Muhammad Waseem, Herre S. J. van der Zant, Zeila Zanolli, David Soriano 2D Materials 12, 031501 (2025) arXiv
  14. 39) Hamiltonian learning quantum magnets with non-local impurity tomography Greta Lupi, Jose L. Lado Phys. Rev. Applied 23, 054077 (2025) arXiv
  15. 40) Control of Andreev Reflection via a Single-Molecule Orbital Lorenz Meyer, Jose L. Lado, Nicolas Néel, Jörg Kröger Phys. Rev. Lett. 134, 146201 (2025) arXiv
  16. 41) Exploring Charge Density Waves in two-dimensional NbSe2 Norma Rivano, Francesco Libbi, Chuin Wei Tan, Christopher Cheung, Jose Lado, Arash Mostofi, Philip Kim, Johannes Lischner, Adolfo O. Fumega, Boris Kozinsky, Zachary A. H. Goodwin arXiv:2504.13675
  17. 42) Charge-entropy-stabilized selenide AgxSn1−xSe Mohamed Oudah, Daisuke Takegami, Shinji Kitao, Jose L. Lado, Anna Meléndez-Sans, Denise S. Christovam, Masato Yoshimura, Ku-Ding Tsuei, Graham McNally, Masahiko Isobe, Kathrin Küster, M. Seto, Bernhard Keimer, D. A. Bonn, Liu Hao Tjeng, George Sawatzky, Hidenori Takagi Communications Materials 6, 58 (2025)
  18. 43) Topological zero modes and correlation pumping in an engineered Kondo lattice Zina Lippo, Elizabeth Louis Pereira, Jose L. Lado, Guangze Chen Phys. Rev. Lett. 134, 116605 (2025) arXiv
  19. 44) On-surface synthesis of Heisenberg spin-1/2 antiferromagnetic molecular chains Kewei Sun, Nan Cao, Orlando J. Silveira, Adolfo O. Fumega, Fiona Hanindita, Shingo Ito, Jose L. Lado, Peter Liljeroth, Adam S. Foster, Shigeki Kawai Science Advances 11 (9), eads1641 (2025) arXiv
  20. 45) Phase diagram of the J1-J2 Heisenberg second-order topological quantum magnet Pascal M. Vecsei, Jose L. Lado Phys. Rev. Research 7, 013194 (2025) arXiv
  21. 46) Multicomponent magneto-orbital order and magneto-orbitons in monolayer VCl3 Luigi Camerano, Adolfo O. Fumega, Gianni Profeta, Jose L. Lado Nano Letters 25, 12, 4825–4831 (2025) arXiv
  22. 47) Lee-Yang formalism for phase transitions of interacting fermions using tensor networks Pascal M. Vecsei, Jose L. Lado, Christian Flindt Phys. Rev. B 111, 075134 (2025) arXiv
  23. 48) Doped Mott phase and charge correlations in monolayer 1T-NbSe2 Xin Huang, Jose L. Lado, Jani Sainio, Peter Liljeroth, Somesh Chandra Ganguli Phys. Rev. Lett. 134, 046504 (2025) arXiv

2024

  1. 49) Correlated states in super-moire materials with a kernel polynomial quantics tensor cross interpolation algorithm Adolfo O. Fumega, Marcel Niedermeier, Jose L. Lado 2D Materials 12 015018 (2024) arXiv
  2. 50) Quantum computing topological invariants of two-dimensional quantum matter Marcel Niedermeier, Marc Nairn, Christian Flindt, Jose L. Lado Phys. Rev. Research 6, 043288 (2024) arXiv
  3. 51) Emergence of Exotic Spin Texture in Supramolecular Metal Complexes on a 2D Superconductor Viliam Vaňo, Stefano Reale, Orlando J. Silveira, Danilo Longo, Mohammad Amini, Massine Kelai, Jaehyun Lee, Atte Martikainen, Shawulienu Kezilebieke, Adam S. Foster, Jose L. Lado, Fabio Donati, Peter Liljeroth, Linghao Yan Phys. Rev. Lett. 133, 236203 (2024) arXiv
  4. 52) Electric field control of moire skyrmion phases in twisted multiferroic NiI2 bilayers Tiago V. C. Antão, Jose L. Lado, Adolfo O. Fumega Nano Letters, 24, 49, 15767-15773 (2024) arXiv
  5. 53) Many-body Liouvillian dynamics with a non-Hermitian tensor-network kernel polynomial algorithm Guangze Chen, Jose L. Lado, Fei Song Phys. Rev. Research 6, 043182 (2024) arXiv
  6. 54) Simulating the quantum Fourier transform, Grover's algorithm, and the quantum counting algorithm with limited entanglement using tensor networks Marcel Niedermeier, Jose L. Lado, Christian Flindt Phys. Rev. Research 6, 033325 (2024) arXiv
  7. 55) Construction of topological quantum magnets from atomic spins on surfaces Hao Wang, Peng Fan, Jing Chen, Lili Jiang, Hong-Jun Gao, Jose L. Lado, Kai Yang Nature Nanotechnology, 19, 1782–1788 (2024) arXiv
  8. 56) Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport Pei-Xin Shen, Zhide Lu, Jose L. Lado, Mircea Trif Phys. Rev. Lett. 133, 086301 (2024) arXiv
  9. 57) Electrical control of magnons in multiferroic NiI2 Andrey Rybakov, Adolfo O. Fumega, Dorye L. Esteras, Jose L. Lado, José J. Baldoví arXiv:2407.21645
  10. 58) Self-doped flat band and spin-triplet superconductivity in monolayer 1T-TaSe2−xTex Jan Phillips, Jose L. Lado, Victor Pardo, Adolfo O. Fumega Journal of Physics: Condensed Matter 36 385804 (2024) arXiv
  11. 59) Machine learning the Kondo entanglement cloud from local measurements Faluke Aikebaier, Teemu Ojanen, Jose L. Lado Phys. Rev. B 109, 195125 (2024) arXiv
  12. 60) Tuning spinaron and Kondo resonances via quantum confinement Markus Aapro, Abraham Kipnis, Jose L. Lado, Shawulienu Kezibelieke, Peter Liljeroth Phys. Rev. B 109, 195415 (2024) arXiv
  13. 61) Moire-enabled artificial topological superconductivity in twisted bilayer graphene Maryam Khosravian, Elena Bascones, Jose L. Lado 2D Materials 2,. 11 035012 (2024) arXiv
  14. 62) A Non-Hermitian Moiré Valley Filter Kai Shao, Hao Geng, Erfu Liu, Jose L. Lado, Wei Chen, D. Y. Xing Phys. Rev. Lett. 132, 156301 (2024) arXiv
  15. 63) Non-Hermitian topology and criticality in photonic arrays with engineered losses Elizabeth Louis Pereira, Hongwei Li, Andrea Blanco-Redondo, Jose L. Lado Phys. Rev. Research 6, 023004 (2024) arXiv
  16. 64) Nature of the unconventional heavy fermion Kondo state in monolayer CeSiI Adolfo O. Fumega, Jose L. Lado Nano Letters 24, 14, 4272–4278 (2024) arXiv
  17. 65) Transfer learning from Hermitian to non-Hermitian quantum many-body physics Sharareh Sayyad, Jose L. Lado Journal of Physics: Condensed Matter, 36 185603 (2024) arXiv
  18. 66) Atomic-scale visualization of multiferroicity in monolayer NiI2 Mohammad Amini, Adolfo O. Fumega, Héctor González-Herrero, Viliam Vaňo, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Advanced Materials, 2311342 (2024) arXiv
  19. 67) Hamiltonian learning with real-space impurity tomography in topological moire superconductors Maryam Khosravian, Rouven Koch, Jose L. Lado J. Phys. Mater. 7 015012 (2024) arXiv
  20. 68) Theory of edge states in graphene-like systems J. L. Lado, J. Fernández-Rossier Encyclopedia of Condensed Matter Physics, 2nd ed., Elsevier, pp. 350-360 (2024) arXiv

2023

  1. 69) Local Probe Isomerization in a One-Dimensional Molecular Array Shigeki Kawai, Orlando J. Silveira, Lauri Kurki, Zhangyu Yuan, Tomohiko Nishiuchi, Takuya Kodama, Kewei Sun, Oscar Custance, Jose L. Lado, Takashi Kubo, Adam S. Foster Nature Communications 14, 7741 (2023) arXiv
  2. 70) Adversarial Hamiltonian learning of quantum dots in a minimal Kitaev chain Rouven Koch, David van Driel, Alberto Bordin, Jose L. Lado, Eliska Greplova Phys. Rev. Applied 20, 044081 (2023) arXiv
  3. 71) Evidence of nodal superconductivity in monolayer 1H-TaS2 with hidden order fluctuations Viliam Vaňo, Somesh Chandra Ganguli, Mohammad Amini, Linghao Yan, Maryam Khosravian, Guangze Chen, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Advanced Materials (2023) arXiv
  4. 72) Atomic-Scale Andreev Probe of Unconventional Superconductivity Wonhee Ko, Sang Yong Song, Jiaqiang Yan, Jose L. Lado, Petro Maksymovych Nano Letters 23 (17), 8310-8318 (2023) arXiv
  5. 73) Hamiltonian inference from dynamical excitations in confined quantum magnets Netta Karjalainen, Zina Lippo, Guangze Chen, Rouven Koch, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Applied 20, 024054 (2023) arXiv
  6. 74) Real-space imaging of triplon excitations in engineered quantum magnets Robert Drost, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Phys. Rev. Lett. 131, 086701 (2023) arXiv
  7. 75) Lee-Yang theory of quantum phase transitions with neural network quantum states Pascal M. Vecsei, Christian Flindt, Jose L. Lado Phys. Rev. Research 5, 033116 (2023) arXiv
  8. 76) Extreme sensitivity of the magnetic ground-state to halide composition in FeCl3−xBrx Andrew Cole, Alenna Streeter, Adolfo O. Fumega, Xiaohan Yao, Zhi-Cheng Wang, Erxi Feng, Huibo Cao, Jose L. Lado, Stephen E. Nagler, Fazel Tafti Phys. Rev. Materials 7, 064401 (2023) arXiv
  9. 77) Topological phase diagrams of exactly solvable non-Hermitian interacting Kitaev chains Sharareh Sayyad, Jose L. Lado Phys. Rev. Research 5, L022046 (2023) arXiv
  10. 78) Effects of electron-electron interactions in the Yu-Shiba-Rusinov lattice model Valerii Kachin, Teemu Ojanen, Jose L. Lado, Timo Hyart Phys. Rev. B 107, 174522 (2023) arXiv
  11. 79) Extracting electronic many-body correlations from local measurements with artificial neural networks Faluke Aikebaier, Teemu Ojanen, Jose L. Lado SciPost Phys. Core 6, 030 (2023) arXiv
  12. 80) Andreev Reflection and Klein Tunneling in High-Temperature Superconductor/Graphene Junctions Sharadh Jois, Jose L. Lado, Genda Gu, Qiang Li, Ji Ung Lee Phys. Rev. Lett. 130, 156201 (2023) arXiv
  13. 81) Visualization of moiré magnons in monolayer ferromagnet Somesh Chandra Ganguli, Markus Aapro, Shawulienu Kezilebieke, Mohammad Amini, Jose L. Lado, Peter Liljeroth Nano Lett. 23, 8, 3412–3417 (2023) arXiv
  14. 82) Moiré-driven multiferroic order in twisted CrCl3, CrBr3 and CrI3 bilayers Adolfo O. Fumega, Jose L. Lado 2D Materials 10 025026 (2023) arXiv
  15. 83) Topological Spin Excitations in Non-Hermitian Spin Chains with a Generalized Kernel Polynomial Algorithm Guangze Chen, Fei Song, Jose L. Lado Phys. Rev. Lett. 130, 100401 (2023) arXiv
  16. 84) Ferroelectric valley valves with graphene/MoTe2 van der Waals heterostructures Adolfo O. Fumega, Jose L. Lado Nanoscale ,15, 2181-2187 (2023) arXiv

2022

  1. 85) Control of molecular orbital ordering using a van der Waals monolayer ferroelectric Mohammad Amini, Orlando J. Silveira, Viliam Vaňo, Jose L. Lado, Adam S. Foster, Peter Liljeroth, Shawulienu Kezilebieke Advanced Materials, 2206456 (2022) arXiv
  2. 86) Controlling magnetic frustration in 1T-TaS2 via Coulomb engineered long-range interactions Guangze Chen, Malte Rösner, Jose L. Lado J. Phys.: Condens. Matter 34 485805 (2022) arXiv
  3. 87) Impurity-induced excitations in a topological two-dimensional ferromagnet/superconductor van der Waals moiré heterostructure Maryam Khosravian, Jose L. Lado Phys. Rev. Materials 6, 094010 (2022) arXiv
  4. 88) Designing quantum many-body matter with conditional generative adversarial networks Rouven Koch, Jose L. Lado Phys. Rev. Research 4, 033223 (2022) arXiv
  5. 89) Topological multiferroic order in twisted transition metal dichalcogenide bilayers Mikael Haavisto, J. L. Lado, Adolfo O. Fumega SciPost Phys. 13, 052 (2022) arXiv
  6. 90) Lee-Yang theory of the two-dimensional quantum Ising model Pascal M. Vecsei, Jose L. Lado, Christian Flindt Phys. Rev. B 106, 054402 (2022) arXiv
  7. 91) Noncontact Andreev Reflection as a Direct Probe of Superconductivity on the Atomic Scale Wonhee Ko, Jose L. Lado, Petro Maksymovych Nano Lett. 22, 10, 4042–4048 (2022)
  8. 92) Nonunitary multiorbital superconductivity from competing interactions in Dirac materials Tobias M. R. Wolf, Maximilian F. Holst, Manfred Sigrist, Jose L. Lado Phys. Rev. Research 4, L012036 (2022) arXiv
  9. 93) Confinement-engineered superconductor to correlated-insulator transition in a van der Waals monolayer Somesh Chandra Ganguli, Viliam Vaňo, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Nano Letters, 22, 5, 1845–1850 (2022) arXiv
  10. 94) Microscopic origin of multiferroic order in monolayer NiI2 Adolfo O. Fumega, J. L. Lado 2D Materials 9 025010 (2022) arXiv
  11. 95) Controlling magnetism through Ising superconductivity in magnetic van der Waals heterostructures Faluke Aikebaier, Tero T. Heikkilä, J. L. Lado Phys. Rev. B 105, 054506 (2022) arXiv
  12. 96) Designing spin-textured flat bands in twisted graphene multilayers via helimagnet encapsulation Guangze Chen, Maryam Khosravian, Jose L. Lado, Aline Ramires 2D Materials, 9 024002 (2022) arXiv
  13. 97) Non-Hermitian many-body topological excitations in interacting quantum dots Timo Hyart, Jose L. Lado Phys. Rev. Research 4, L012006 (2022) arXiv
  14. 98) Moiré-Enabled Topological Superconductivity Shawulienu Kezilebieke, Viliam Vaňo, Md N. Huda, Markus Aapro, Somesh Chandra Ganguli, Peter Liljeroth, Jose L. Lado Nano Lett. 2022, 22, 1, 328-333 arXiv

2021

  1. 99) Artificial heavy fermions in a van der Waals heterostructure Viliam Vaňo, Mohammad Amini, Somesh Chandra Ganguli, Guangze Chen, Jose L. Lado, Shawulienu Kezilebieke, Peter Liljeroth Nature 599, 582–586 (2021) arXiv
  2. 100) Kondo-lattice-mediated interactions in flat band systems Pramod Kumar, Guangze Chen, J. L. Lado Phys. Rev. Research 3, 043113 (2021) arXiv
  3. 101) Tunable moire spinons in magnetically encapsulated twisted van der Waals quantum spin-liquids Guangze Chen, J. L. Lado Phys. Rev. Research 3, 033276 (2021) arXiv
  4. 102) Lee-Yang theory of criticality in interacting quantum many-body systems Timo Kist, Jose L. Lado, Christian Flindt Phys. Rev. Research 3, 033206 (2021) arXiv
  5. 103) Neural network enhanced hybrid quantum many-body dynamical distributions Rouven Koch, Jose L. Lado Phys. Rev. Research 3, 033102 (2021) arXiv
  6. 104) Emulating heavy fermions in twisted trilayer graphene Aline Ramires, Jose L. Lado Phys. Rev. Lett. 127, 026401 (2021) arXiv
  7. 105) Spin-orbit correlations and exchange-bias control in twisted Janus dichalcogenide multilayers D. Soriano, J. L. Lado New J. Phys. 23 073038 (2021) arXiv
  8. 106) Correlation-induced valley topology in buckled graphene superlattices Antonio L. R. Manesco, Jose L. Lado 2D Materials 8 035057 (2021) arXiv
  9. 107) Observation of Yu-Shiba-Rusinov states in superconducting graphene E. Cortés-del Río, J.L. Lado, V. Cherkez, P. Mallet, J-Y. Veuillen, J.C. Cuevas, J.M. Gómez-Rodríguez, J. Fernández-Rossier, I. Brihuega Advanced Materials, 33(22), 2008113 (2021) arXiv
  10. 108) Synthesis, Engineering, and Theory of 2D van der Waals Magnets M. Blei, J. L. Lado, Q. Song, D. Dey, O. Erten, V. Pardo, R. Comin, S. Tongay, A.S. Botana Applied Physics Reviews 8, 021301 (2021) arXiv
  11. 109) Many-body Majorana-like zero modes without gauge symmetry breaking V. Vadimov, T. Hyart, J. L. Lado, M. Möttönen, T. Ala-Nissila Phys. Rev. Research 3, 023002 (2021) arXiv
  12. 110) Inducing a many-body topological state of matter through Coulomb-engineered local interactions Malte Rösner, Jose L. Lado Phys. Rev. Research 3, 013265 (2021) arXiv
  13. 111) Quasiperiodic criticality and spin-triplet superconductivity in superconductor-antiferromagnet moire patterns Maryam Khosravian, J. L. Lado Phys. Rev. Research 3, 013262 (2021) arXiv
  14. 112) Interaction-induced topological superconductivity in antiferromagnet-superconductor junctions Senna S. Luntama, Päivi Törmä, Jose L. Lado Phys. Rev. Research 3, L012021 (2021) arXiv
  15. 113) Spontaneous Valley Spirals in Magnetically Encapsulated Twisted Bilayer Graphene Tobias M. R. Wolf, Oded Zilberberg, Gianni Blatter, Jose L. Lado Phys. Rev. Lett. 126, 056803 (2021) arXiv
  16. 114) Designer quantum matter in van der Waals heterostructures Jose L. Lado, Peter Liljeroth arXiv:2102.11779v1
  17. 115) Dynamical topological excitations in parafermion chains Vilja Kaskela, J. L. Lado Phys. Rev. Research 3, 013095 (2021) arXiv

2020

  1. 116) Anti-chiral states in twisted graphene multilayers M. Michael Denner, J. L. Lado, Oded Zilberberg Phys. Rev. Research 2, 043190 (2020) arXiv
  2. 117) Correlations in the elastic Landau level of spontaneously buckled graphene Antonio L. R. Manesco, Jose L. Lado, Eduardo V. Ribeiro, Gabrielle Weber, Durval Rodrigues Jr 2D Materials, Volume 8, Number 1 (2020) arXiv
  3. 118) Impurity-induced resonant spinon zero modes in Dirac quantum spin-liquids Guangze Chen, J. L. Lado Phys. Rev. Research 2, 033466 (2020) arXiv
  4. 119) Electrical band flattening, valley flux, and superconductivity in twisted trilayer graphene Alejandro Lopez-Bezanilla, J. L. Lado Phys. Rev. Research 2, 033357 (2020) arXiv
  5. 120) Exchange-bias controlled correlations in magnetically encapsulated twisted van der Waals dichalcogenides D. Soriano, J. L. Lado Journal of Physics D: Applied Physics, Volume 53, Number 47 arXiv
  6. 121) Accessing new magnetic regimes by tuning the ligand spin-orbit coupling in van der Waals magnets T. A. Tartaglia, J. N. Tang, J. L. Lado, F. Bahrami, M. Abramchuk, G. T. McCandless, M. C. Doyle, K. S. Burch, Y. Ran, J. Y. Chan, F. Tafti Science Advances Vol. 6, no. 30, eabb9379 (2020) arXiv
  7. 122) Quantum confinement of Dirac quasiparticles in graphene patterned with subnanometer precision E. Cortés-del Río, P. Mallet, H. González-Herrero, J.L. Lado, J. Fernández-Rossier, J.M. Gómez-Rodríguez, J-Y. Veuille, I. Brihuega Advanced Materials, 32(30), 2001119 (2020) arXiv
  8. 123) Solitonic in-gap modes in a superconductor-quantum antiferromagnet interface J. L. Lado, M. Sigrist Phys. Rev. Research 2, 023347 (2020) arXiv
  9. 124) Emergence of criticality through a cascade of delocalization transitions in quasiperiodic chains V. Goblot, A. Štrkalj, N. Pernet, J. L. Lado, C. Dorow, A. Lemaître, L. Le Gratiet, A. Harouri, I. Sagnes, S. Ravets, A. Amo, J. Bloch, O. Zilberberg Nature Physics 16, 832–836 (2020) arXiv

2019

  1. 125) Single spin resonance driven by electric modulation of the g factor anisotropy Alejandro Ferrón, Santiago A. Rodríguez, Sergio S. Gómez, Jose L. Lado, Joaquín Fernández-Rossier Phys. Rev. Research 1, 033185 (2019) arXiv
  2. 126) Detecting non-unitary multiorbital superconductivity with Dirac points at finite energies J. L. Lado, M. Sigrist Phys. Rev. Research 1, 033107 (2019) arXiv
  3. 127) Emergent quantum matter in graphene nanoribbons J. L. Lado, R. Ortiz, J. Fernández-Rossier Chapter 4 of the book "Graphene Nanoribbons", Edited by A. Tejeda, P. Seneor, L. Brey, IOP Publishing (2019) arXiv
  4. 128) Gap Opening in Twisted Double Bilayer Graphene by Crystal fields Peter Rickhaus, Giulia Zheng, Jose L. Lado, Yongjin Lee, Annika Kurzmann, Marius Eich, Riccardo Pisoni, Chuyao Tong, Rebekka Garreis, Carolin Gold, Michele Masseroni, Takashi Taniguchi, Kenji Wantanabe, Thomas Ihn, Klaus Ensslin Nano Lett. 19, 12, 8821-8828 (2019) arXiv
  5. 129) Topological spin excitations in Harper-Heisenberg spin chains J. L. Lado, Oded Zilberberg Phys. Rev. Research 1, 033009 (2019) arXiv
  6. 130) Electrically tunable flat bands and magnetism in twisted bilayer graphene T. M. R. Wolf, J. L. Lado, G. Blatter, O. Zilberberg Phys. Rev. Lett. 123, 096802 (2019) arXiv
  7. 131) Defect-induced magnetism and Yu-Shiba-Rusinov states in twisted bilayer graphene A. Lopez-Bezanilla, J. L. Lado Phys. Rev. Materials 3, 084003 (2019) arXiv
  8. 132) Impurity-induced triple point fermions in twisted bilayer graphene Aline Ramires, J. L. Lado Phys. Rev. B 99, 245118 (2019) arXiv
  9. 133) Tuning the Exchange Bias on a Single Atom from 1 mT to 10 T Kai Yang, William Paul, Fabian D. Natterer, Jose L. Lado, Yujeong Bae, Philip Willke, Taeyoung Choi, Alejandro Ferrón, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Phys. Rev. Lett. 122, 227203 (2019) arXiv
  10. 134) Interaction driven surface Chern insulator in nodal line semimetals Wei Chen, J. L. Lado Phys. Rev. Lett. 122, 016803 (2019) arXiv

2018

  1. 135) Electrically controlled nuclear polarization of individual atoms Kai Yang, Philip Willke, Yujeong Bae, Alejandro Ferrón, Jose L. Lado, Arzhang Ardavan, Joaquín Fernández-Rossier, Andreas J. Heinrich & Christopher P. Lutz Nature Nanotechnology 13, 1120–1125 (2018)
  2. 136) Electrically tunable gauge fields in tiny-angle twisted bilayer graphene A. Ramires, J. L. Lado Phys. Rev. Lett. 121, 146801 (2018) arXiv
  3. 137) Two-dimensional topological superconductivity with antiferromagnetic insulators J. L. Lado, M. Sigrist Phys. Rev. Lett. 121, 037002 (2018) arXiv
  4. 138) Probing magnetism in 2D van der Waals crystalline insulators via electron tunneling Dahlia R. Klein, David MacNeill, Jose L. Lado, David Soriano, Efrén Navarro-Moratalla, Kenji Watanabe, Takashi Taniguchi, Soham Manni, Paul Canfield, Joaquín Fernández-Rossier, Pablo Jarillo-Herrero Science 360.6394 (2018): 1218-1222 arXiv
  5. 139) Electrical spin manipulation in graphene nanostructures R. Ortiz, N. A. García-Martínez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 97, 195425 (2018) arXiv
  6. 140) Electron and Cooper-pair transport across a single magnetic molecule explored with a scanning tunneling microscope J. Brand, S. Gozdzik, N. Néel, J. L. Lado, J. Fernández-Rossier, J. Kröger Phys. Rev. B 97, 195429 (2018) arXiv
  7. 141) Real space mapping of topological invariants using artificial neural networks D. Carvalho, N. A. García-Martínez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 97, 115453 (2018) arXiv
  8. 142) Hyperfine interaction of individual atoms on a surface Philip Willke, Yujeong Bae, Kai Yang, Jose L. Lado, Alejandro Ferrón, Taeyoung Choi, Arzhang Ardavan, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Science 362.6412 (2018): 336-339

2017

  1. 143) Engineering the Eigenstates of Coupled Spin-1/2 Atoms on a Surface Kai Yang, Yujeong Bae, William Paul, Fabian D. Natterer, Philip Willke, Jose L. Lado, Alejandro Ferrón, Taeyoung Choi, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Phys. Rev. Lett. 119, 227206 (2017) arXiv
  2. 144) Exchange mechanism for electron paramagnetic resonance of individual adatoms J. L. Lado, A. Ferrón, J. Fernández-Rossier Phys. Rev. B 96, 205420 (2017) arXiv
  3. 145) Characterization of highly crystalline lead iodide nanosheets prepared by room-temperature solution processing Riccardo Frisenda, Joshua O. Island, Jose L. Lado, Emerson Giovanelli, Patricia Gant, Philipp Nagler, Sebastian Bange, John M. Lupton, Christian Schüller, Aday Molina-Mendoza, Lucía Aballe, Michael Foerster, Tobias Korn, Miguel Angel Niño, David Perez de Lara, Emilio M. Pérez, Joaquín Fernández-Rossier, Andres Castellanos-Gomez Nanotechnology 28.45 (2017): 455703 arXiv
  4. 146) Electrical Detection of Individual Skyrmions in Graphene Devices F. Finocchiaro, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 96, 155422 (2017) arXiv
  5. 147) Electrically controllable magnetism in twisted bilayer graphene Luis A. González-Árraga, J. L. Lado, Francisco Guinea, Pablo San-Jose Phys. Rev. Lett. 119, 107201 (2017) arXiv
  6. 148) Anomalous magnetism in hydrogenated graphene N. A. García-Martínez, J. L. Lado, D. Jacob, J. Fernández-Rossier Phys. Rev. B 96, 024403 (2017) arXiv
  7. 149) On the origin of magnetic anisotropy in two dimensional CrI3 J. L. Lado, J. Fernández-Rossier 2D Materials, Volume 4, Number 3 (2017) arXiv
  8. 150) Emergence of quasiparticle Bloch states in artificial crystals crafted atom-by-atom Jan Girovsky, Jose L. Lado, Floris E. Kalff, Eleonora Fahrenfort, Lucas J.J.M. Peters, Joaquín Fernández-Rossier, Alexander F. Otte SciPost Phys. 2, 020 (2017) arXiv
  9. 151) Electronic Transport in Gadolinium Atomic-Size Contacts B. Olivera, C. Salgado, J. L. Lado, A. Karimi, V. Henkel, E. Scheer, J. Fernández-Rossier, J.J. Palacios, C. Untiedt Phys. Rev. B 95, 075409 (2017) arXiv

2016

  1. 152) Quantum spin Hall effect in rutile-based oxide multilayers J. L. Lado, D. Guterding, P. Barone, R. Valenti, V. Pardo Phys. Rev. B 94, 235111 (2016) arXiv
  2. 153) Dirac topological insulator in the dz2 manifold of a honeycomb oxide J. L. Lado, V. Pardo Phys. Rev. B 94, 115141 (2016) arXiv
  3. 154) Engineering spin exchange in non-bipartite graphene zigzag edges R. Ortiz, J. L. Lado, M. Melle-Franco, J. Fernández-Rossier Phys. Rev. B 94, 094414 (2016) arXiv
  4. 155) Landau Levels in two-dimensional materials using Wannier Hamiltonians obtained by first principles J. L. Lado, J. Fernández-Rossier 2D Materials. 3 035023 (2016) arXiv
  5. 156) A kilobyte rewritable atomic memory F. E. Kalff, M. P. Rebergen, E. Fahrenfort, J. Girovsky, R. Toskovic, J. L. Lado, J. Fernández-Rossier, A. F. Otte Nature Nanotechnology 11, 926–929 (2016) arXiv
  6. 157) Centimeter-scale synthesis of ultrathin layered MoO3 by van der Waals epitaxy Aday J. Molina-Mendoza, Jose Luis Lado, Joshua Island, Miguel Angel Niño, Lucía Aballe, Michael Foerster, Flavio Y. Bruno, Herre S. J. van der Zant, Gabino Rubio-Bollinger, Nicolas Agraït, Emilio Perez, Joaquín Fernández-Rossier, Andres Castellanos-Gomez Chem. Mater., 2016, 28 (11), pp 4042-4051 arXiv
  7. 158) Unconventional Yu-Shiba-Rusinov states in hydrogenated graphene J. L. Lado, J. Fernández-Rossier 2D Materials 3 (2), 025001 (2016) arXiv
  8. 159) Topological features of engineered arrays of adsorbates in honeycomb lattices Luis A. González-Árraga, J. L. Lado, F. Guinea Physica B: Condensed Matter 496, 1-8 (2016) arXiv

2015

  1. 160) Majorana Zero Modes in Graphene P. San-Jose, J. L. Lado, R. Aguado, F. Guinea, J. Fernández-Rossier Physical Review X 5 (4), 041042 (2015) arXiv
  2. 161) Edge states in graphene-like systems J. L. Lado, N. Garcia-Martinez, J. Fernández-Rossier Synthetic Metals 210, 56-67 (2015) arXiv
  3. 162) Electronic properties of transition metal atoms on Cu2N/Cu(100) A. Ferrón, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 92, 174407 (2015) arXiv
  4. 163) Non-collinear vs collinear description of the Ir-based one-t2g -hole perovskite-related compounds: SrIrO3 and Sr2IrO4 J. L. Lado, V. Pardo Phys. Rev. B 92, 155151 (2015) arXiv
  5. 164) Quantum Anomalous Hall effect in graphene coupled to skyrmions J. L. Lado, J. Fernández-Rossier Phys. Rev. B 92, 115433 (2015) arXiv
  6. 165) Controlled complete suppression of single-atom inelastic spin and orbital cotunnelling B. Bryant, R. Toskovic, A. Ferrón, J. L. Lado, A. Spinelli, J. Fernández-Rossier, A. F. Otte Nano Letters 15 (10), 6542-6546 (2015) arXiv
  7. 166) Quantum spin Hall phase in multilayer graphene N. Garcia-Martinez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 91, 235451 (2015) arXiv

2014

  1. 167) Noncollinear magnetic phases and edge states in graphene quantum Hall bars J. L. Lado, J. Fernández-Rossier Phys. Rev. B 90, 165429 (2014) arXiv
  2. 168) Magnetic edge anisotropy in graphene-like honeycomb crystals J. L. Lado, J. Fernández-Rossier Physical Review Letters 113, 027203 (2014) arXiv

2013

  1. 169) Ab initio study of Z2 topological phases in perovskite (111) (SrTiO3)7/(SrIrO3)2 and (KTaO3)7/(KPtO3)2 multilayers J. L. Lado, V. Pardo, D. Baldomir Phys. Rev. B 88, 155119 (2013)
  2. 170) Quantum Hall effect in gapped graphene heterojunctions J. L. Lado, J. W. González, J. Fernández-Rossier Phys. Rev. B 88, 035448 (2013) arXiv

149 articles published in peer-reviewed journals.

2026

  1. 1) Topology and criticality in non-Hermitian multimodal optical resonators through engineered losses Elizabeth Louis Pereira, Hongwei Li, Andrea Blanco-Redondo, Jose L. Lado Phys. Rev. Research 8, 033132 (2026) arXiv
  2. 2) Quantum circuit algorithm for topological invariants of second-order topological many-body quantum magnets Sebastián Domínguez-Calderón, Marcel Niedermeier, Jose L. Lado, Pascal M. Vecsei Phys. Rev. B 114, 065139 (2026) arXiv
  3. 3) Cross-Platform Autonomous Control of Minimal Kitaev Chains David van Driel, Rouven Koch, Vincent P. M. Sietses, Sebastiaan L. D. ten Haaf, Chun-Xiao Liu, Francesco Zatelli, Bart Roovers, Alberto Bordin, Nick van Loo, Guanzhong Wang, Jan Cornelis Wolff, Grzegorz P. Mazur, Tom Dvir, Ivan Kulesh, Qingzhen Wang, A. Mert Bozkurt, Sasa Gazibegovic, Ghada Badawy, Erik P. A. M. Bakkers, Michael Wimmer, Srijit Goswami, Jose L. Lado, Leo P. Kouwenhoven, Eliska Greplova PRX Intelligence 1, 013005 (2026) arXiv
  4. 4) Parity-dependent double degeneracy and spectral statistics in the projected dice lattice Koushik Swaminathan, Anouar Moustaj, Jose L. Lado, Sebastiano Peotta Phys. Rev. B 114, L051108 (2026) arXiv
  5. 5) Machine-learning-enabled characterization of individual ring resonators in integrated photonic lattices Elizabeth Louis Pereira, Amin Hashemi, Faluke Aikebaier, Hongwei Li, Jose L. Lado, Andrea Blanco-Redondo APL Photonics 11, 076124 (2026)
  6. 6) Observation of tunable chiral spin textures with nonlinear optics Youqiang Huang, Tiago V. C. Antão, Adolfo O. Fumega, Mikko Turunen, Yi Zhang, Hanlin Fang, Nianze Shang, Juan C. Arias-Muñoz, Fedor Nigmatulin, Hao Hong, Andrew S. Kim, Faisal Ahmed, Hyunyong Choi, Sanshui Xiao, Kaihui Liu, Jose L. Lado, Zhipei Sun Nature Communications 17, 7576 (2026) arXiv
  7. 7) Tensor network approach to momentum-resolved spectroscopy in nonperiodic super-moiré systems Anouar Moustaj, Yitao Sun, Tiago V. C. Antão, Jose L. Lado Phys. Rev. Research 8, 023282 (2026) arXiv
  8. 8) Tensor network method for real-space topology in quasicrystal Chern mosaics Tiago V. C. Antão, Yitao Sun, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Lett. 136, 156601 (2026) arXiv
  9. 9) Solving the Gross-Pitaevskii equation on multiple different scales using the quantics tensor train representation Marcel Niedermeier, Adrien Moulinas, Thibaud Louvet, Jose L. Lado, Xavier Waintal Phys. Rev. Research 8, 023006 (2026) arXiv
  10. 10) Roadmap on nanoscale superconductivity for quantum technologies Oleksandr Dobrovolskiy, Hermann Suderow, Francesco Tafuri, Annica M. Black-Schaffer, Jose L. Lado, Asle Sudbø, Daniela Stornaioulo, Chuan Li, Anna E. Böhmer, Lan Maria Tran, Andrzej J. Zaleski, Adrian Crisan, Massimiliano Polichetti, Armando Galluzzi, Ali Gencer, Bernd Aichner, Neven Barišić, Wolfgang Lang, Tomas Samuely, Martin Gmitra, Tristan Cren, Mateo Calandra, Peter Samuely, Jeroen Custers, Rosa Córdoba, Vladimir M. Fomin, Nicola Poccia, Pavol Szabó, Fabrizio Porrati, Gleb Kakazei, Jan Aarts, Jason Robinson, Javier E. Villegas, Matthias Althammer, Hans Huebl, Akashdeep Kamra, Mathias Weiler, J. Hugo Dil, Daniil Evtushinsky, Beena Kalisky, Yonathan Anahory, Simon Bending, Peter Liljeroth, Abdou Hassanien, Isabel Guillamón, Edwin Herrera, Alejandro V. Silhanek, Joris Van de Vondel, Anna Palau, Ilya Charaev, Maria Sidorova, Floriana Lombardi, Thilo Bauch, Cheryl Feuillet-Palma, Vasily Stolyarov, Dimitri Roditchev, Vladimir M. Krasnov, Benedikt Hampel, María José Martínez-Pérez, Javier Sesé, Dieter Koelle, Stefano Poletto, Alessandro Bruno, Davide Massarotti Superconductor Science and Technology 39, 023502 (2026)
  11. 11) Strain-induced two-dimensional topological crystalline insulator Liwei Jing, Mohammad Amini, Adolfo O. Fumega, Orlando J. Silveira, Jose L. Lado, Peter Liljeroth, Shawulienu Kezilebieke Nature Communications 17, 817 (2026) arXiv
  12. 12) Coupling of Klein-Andreev Resonant States in BiSrCaCuO-graphene-BiSrCaCuO Devices Sharadh Jois, Jose L. Lado, Genda Gu, Qiang Li, Ji Ung Lee Phys. Rev. B 113, 035410 (2026) arXiv

2025

  1. 13) Self-consistent tensor network method for correlated super-moiré matter beyond one billion sites Yitao Sun, Marcel Niedermeier, Tiago V. C. Antão, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Research 7, 043288 (2025) arXiv
  2. 14) Transfer learning of many-body electronic correlation entropy from local measurements Faluke Aikebaier, Teemu Ojanen, Jose L. Lado Phys. Rev. Applied 24, 054014 (2025) arXiv
  3. 15) Hamiltonian learning of triplon excitations in an artificial nanoscale molecular quantum magnet Rouven Koch, Robert Drost, Peter Liljeroth, Jose L. Lado Nano Letters 25, 36, 13435-13440 (2025) arXiv
  4. 16) Multiferroic nematic d-wave altermagnetism driven by orbital-order on the honeycomb lattice Luigi Camerano, Adolfo O. Fumega, Jose L. Lado, Alessandro Stroppa, Gianni Profeta npj 2D Materials and Applications 9, 75 (2025) arXiv
  5. 17) Observation of non-Hermitian topology from optical loss modulation Amin Hashemi, Elizabeth Louis Pereira, Hongwei Li, Jose L. Lado, Andrea Blanco-Redondo Nature Materials 24, 1393-1399 (2025) arXiv
  6. 18) Electrical probe of spin-spiral order in quantum spin Hall/spin-spiral magnet van der Waals heterostructures Fedor Nigmatulin, Jose L. Lado, Zhipei Sun Phys. Rev. B 112, 024430 (2025) arXiv
  7. 19) Frustration-Induced Many-Body Degeneracy in Spin −1/2 Molecular Quantum Rings Donglin Li, Nan Cao, Marvin Metzelaars, Orlando J Silveira, Joakim Jestilä, Adolfo Fumega, Tomohiko Nishiuchi, Jose Lado, Adam S Foster, Takashi Kubo, Shigeki Kawai J. Am. Chem. Soc., 147, 30, 26208–26217 (2025)
  8. 20) Roadmap on quantum magnetic materials Antonija Grubišić-Čabo, Marcos H. D. Guimarães, Dmytro Afanasiev, Jose H. Garcia Aguilar, Irene Aguilera, Mazhar N. Ali, Semonti Bhattacharyya, Yaroslav M. Blanter, Rixt Bosma, Zhiyuan Cheng, Zhiying Dan, Saroj P. Dash, Joaquín Medina Dueñas, Joaquín Fernández-Rossier, Marco Gibertini, Sergii Grytsiuk, Maurits J. A. Houmes, Anna Isaeva, Chrystalla Knekna, Arnold H. Kole, Samer Kurdi, Jose Lado, Samuel Mañas-Valero, J. Marcelo J. Lopes, Damiano Marian, Mengxing Na, Falk Pabst, Sergio Barquero Pierantoni, Mexx Regout, Riccardo Reho, Malte Rösner, David Sanz, Toeno van der Sar, Jagoda Sławińska, Matthieu J. Verstraete, Muhammad Waseem, Herre S. J. van der Zant, Zeila Zanolli, David Soriano 2D Materials 12, 031501 (2025) arXiv
  9. 21) Hamiltonian learning quantum magnets with non-local impurity tomography Greta Lupi, Jose L. Lado Phys. Rev. Applied 23, 054077 (2025) arXiv
  10. 22) Control of Andreev Reflection via a Single-Molecule Orbital Lorenz Meyer, Jose L. Lado, Nicolas Néel, Jörg Kröger Phys. Rev. Lett. 134, 146201 (2025) arXiv
  11. 23) Charge-entropy-stabilized selenide AgxSn1−xSe Mohamed Oudah, Daisuke Takegami, Shinji Kitao, Jose L. Lado, Anna Meléndez-Sans, Denise S. Christovam, Masato Yoshimura, Ku-Ding Tsuei, Graham McNally, Masahiko Isobe, Kathrin Küster, M. Seto, Bernhard Keimer, D. A. Bonn, Liu Hao Tjeng, George Sawatzky, Hidenori Takagi Communications Materials 6, 58 (2025)
  12. 24) Topological zero modes and correlation pumping in an engineered Kondo lattice Zina Lippo, Elizabeth Louis Pereira, Jose L. Lado, Guangze Chen Phys. Rev. Lett. 134, 116605 (2025) arXiv
  13. 25) On-surface synthesis of Heisenberg spin-1/2 antiferromagnetic molecular chains Kewei Sun, Nan Cao, Orlando J. Silveira, Adolfo O. Fumega, Fiona Hanindita, Shingo Ito, Jose L. Lado, Peter Liljeroth, Adam S. Foster, Shigeki Kawai Science Advances 11 (9), eads1641 (2025) arXiv
  14. 26) Phase diagram of the J1-J2 Heisenberg second-order topological quantum magnet Pascal M. Vecsei, Jose L. Lado Phys. Rev. Research 7, 013194 (2025) arXiv
  15. 27) Multicomponent magneto-orbital order and magneto-orbitons in monolayer VCl3 Luigi Camerano, Adolfo O. Fumega, Gianni Profeta, Jose L. Lado Nano Letters 25, 12, 4825–4831 (2025) arXiv
  16. 28) Lee-Yang formalism for phase transitions of interacting fermions using tensor networks Pascal M. Vecsei, Jose L. Lado, Christian Flindt Phys. Rev. B 111, 075134 (2025) arXiv
  17. 29) Doped Mott phase and charge correlations in monolayer 1T-NbSe2 Xin Huang, Jose L. Lado, Jani Sainio, Peter Liljeroth, Somesh Chandra Ganguli Phys. Rev. Lett. 134, 046504 (2025) arXiv

2024

  1. 30) Correlated states in super-moire materials with a kernel polynomial quantics tensor cross interpolation algorithm Adolfo O. Fumega, Marcel Niedermeier, Jose L. Lado 2D Materials 12 015018 (2024) arXiv
  2. 31) Quantum computing topological invariants of two-dimensional quantum matter Marcel Niedermeier, Marc Nairn, Christian Flindt, Jose L. Lado Phys. Rev. Research 6, 043288 (2024) arXiv
  3. 32) Emergence of Exotic Spin Texture in Supramolecular Metal Complexes on a 2D Superconductor Viliam Vaňo, Stefano Reale, Orlando J. Silveira, Danilo Longo, Mohammad Amini, Massine Kelai, Jaehyun Lee, Atte Martikainen, Shawulienu Kezilebieke, Adam S. Foster, Jose L. Lado, Fabio Donati, Peter Liljeroth, Linghao Yan Phys. Rev. Lett. 133, 236203 (2024) arXiv
  4. 33) Electric field control of moire skyrmion phases in twisted multiferroic NiI2 bilayers Tiago V. C. Antão, Jose L. Lado, Adolfo O. Fumega Nano Letters, 24, 49, 15767-15773 (2024) arXiv
  5. 34) Many-body Liouvillian dynamics with a non-Hermitian tensor-network kernel polynomial algorithm Guangze Chen, Jose L. Lado, Fei Song Phys. Rev. Research 6, 043182 (2024) arXiv
  6. 35) Simulating the quantum Fourier transform, Grover's algorithm, and the quantum counting algorithm with limited entanglement using tensor networks Marcel Niedermeier, Jose L. Lado, Christian Flindt Phys. Rev. Research 6, 033325 (2024) arXiv
  7. 36) Construction of topological quantum magnets from atomic spins on surfaces Hao Wang, Peng Fan, Jing Chen, Lili Jiang, Hong-Jun Gao, Jose L. Lado, Kai Yang Nature Nanotechnology, 19, 1782–1788 (2024) arXiv
  8. 37) Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport Pei-Xin Shen, Zhide Lu, Jose L. Lado, Mircea Trif Phys. Rev. Lett. 133, 086301 (2024) arXiv
  9. 38) Self-doped flat band and spin-triplet superconductivity in monolayer 1T-TaSe2−xTex Jan Phillips, Jose L. Lado, Victor Pardo, Adolfo O. Fumega Journal of Physics: Condensed Matter 36 385804 (2024) arXiv
  10. 39) Machine learning the Kondo entanglement cloud from local measurements Faluke Aikebaier, Teemu Ojanen, Jose L. Lado Phys. Rev. B 109, 195125 (2024) arXiv
  11. 40) Tuning spinaron and Kondo resonances via quantum confinement Markus Aapro, Abraham Kipnis, Jose L. Lado, Shawulienu Kezibelieke, Peter Liljeroth Phys. Rev. B 109, 195415 (2024) arXiv
  12. 41) Moire-enabled artificial topological superconductivity in twisted bilayer graphene Maryam Khosravian, Elena Bascones, Jose L. Lado 2D Materials 2,. 11 035012 (2024) arXiv
  13. 42) A Non-Hermitian Moiré Valley Filter Kai Shao, Hao Geng, Erfu Liu, Jose L. Lado, Wei Chen, D. Y. Xing Phys. Rev. Lett. 132, 156301 (2024) arXiv
  14. 43) Non-Hermitian topology and criticality in photonic arrays with engineered losses Elizabeth Louis Pereira, Hongwei Li, Andrea Blanco-Redondo, Jose L. Lado Phys. Rev. Research 6, 023004 (2024) arXiv
  15. 44) Nature of the unconventional heavy fermion Kondo state in monolayer CeSiI Adolfo O. Fumega, Jose L. Lado Nano Letters 24, 14, 4272–4278 (2024) arXiv
  16. 45) Transfer learning from Hermitian to non-Hermitian quantum many-body physics Sharareh Sayyad, Jose L. Lado Journal of Physics: Condensed Matter, 36 185603 (2024) arXiv
  17. 46) Atomic-scale visualization of multiferroicity in monolayer NiI2 Mohammad Amini, Adolfo O. Fumega, Héctor González-Herrero, Viliam Vaňo, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Advanced Materials, 2311342 (2024) arXiv
  18. 47) Hamiltonian learning with real-space impurity tomography in topological moire superconductors Maryam Khosravian, Rouven Koch, Jose L. Lado J. Phys. Mater. 7 015012 (2024) arXiv
  19. 48) Theory of edge states in graphene-like systems J. L. Lado, J. Fernández-Rossier Encyclopedia of Condensed Matter Physics, 2nd ed., Elsevier, pp. 350-360 (2024) arXiv

2023

  1. 49) Local Probe Isomerization in a One-Dimensional Molecular Array Shigeki Kawai, Orlando J. Silveira, Lauri Kurki, Zhangyu Yuan, Tomohiko Nishiuchi, Takuya Kodama, Kewei Sun, Oscar Custance, Jose L. Lado, Takashi Kubo, Adam S. Foster Nature Communications 14, 7741 (2023) arXiv
  2. 50) Adversarial Hamiltonian learning of quantum dots in a minimal Kitaev chain Rouven Koch, David van Driel, Alberto Bordin, Jose L. Lado, Eliska Greplova Phys. Rev. Applied 20, 044081 (2023) arXiv
  3. 51) Evidence of nodal superconductivity in monolayer 1H-TaS2 with hidden order fluctuations Viliam Vaňo, Somesh Chandra Ganguli, Mohammad Amini, Linghao Yan, Maryam Khosravian, Guangze Chen, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Advanced Materials (2023) arXiv
  4. 52) Atomic-Scale Andreev Probe of Unconventional Superconductivity Wonhee Ko, Sang Yong Song, Jiaqiang Yan, Jose L. Lado, Petro Maksymovych Nano Letters 23 (17), 8310-8318 (2023) arXiv
  5. 53) Hamiltonian inference from dynamical excitations in confined quantum magnets Netta Karjalainen, Zina Lippo, Guangze Chen, Rouven Koch, Adolfo O. Fumega, Jose L. Lado Phys. Rev. Applied 20, 024054 (2023) arXiv
  6. 54) Real-space imaging of triplon excitations in engineered quantum magnets Robert Drost, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Phys. Rev. Lett. 131, 086701 (2023) arXiv
  7. 55) Lee-Yang theory of quantum phase transitions with neural network quantum states Pascal M. Vecsei, Christian Flindt, Jose L. Lado Phys. Rev. Research 5, 033116 (2023) arXiv
  8. 56) Extreme sensitivity of the magnetic ground-state to halide composition in FeCl3−xBrx Andrew Cole, Alenna Streeter, Adolfo O. Fumega, Xiaohan Yao, Zhi-Cheng Wang, Erxi Feng, Huibo Cao, Jose L. Lado, Stephen E. Nagler, Fazel Tafti Phys. Rev. Materials 7, 064401 (2023) arXiv
  9. 57) Topological phase diagrams of exactly solvable non-Hermitian interacting Kitaev chains Sharareh Sayyad, Jose L. Lado Phys. Rev. Research 5, L022046 (2023) arXiv
  10. 58) Effects of electron-electron interactions in the Yu-Shiba-Rusinov lattice model Valerii Kachin, Teemu Ojanen, Jose L. Lado, Timo Hyart Phys. Rev. B 107, 174522 (2023) arXiv
  11. 59) Extracting electronic many-body correlations from local measurements with artificial neural networks Faluke Aikebaier, Teemu Ojanen, Jose L. Lado SciPost Phys. Core 6, 030 (2023) arXiv
  12. 60) Andreev Reflection and Klein Tunneling in High-Temperature Superconductor/Graphene Junctions Sharadh Jois, Jose L. Lado, Genda Gu, Qiang Li, Ji Ung Lee Phys. Rev. Lett. 130, 156201 (2023) arXiv
  13. 61) Visualization of moiré magnons in monolayer ferromagnet Somesh Chandra Ganguli, Markus Aapro, Shawulienu Kezilebieke, Mohammad Amini, Jose L. Lado, Peter Liljeroth Nano Lett. 23, 8, 3412–3417 (2023) arXiv
  14. 62) Moiré-driven multiferroic order in twisted CrCl3, CrBr3 and CrI3 bilayers Adolfo O. Fumega, Jose L. Lado 2D Materials 10 025026 (2023) arXiv
  15. 63) Topological Spin Excitations in Non-Hermitian Spin Chains with a Generalized Kernel Polynomial Algorithm Guangze Chen, Fei Song, Jose L. Lado Phys. Rev. Lett. 130, 100401 (2023) arXiv
  16. 64) Ferroelectric valley valves with graphene/MoTe2 van der Waals heterostructures Adolfo O. Fumega, Jose L. Lado Nanoscale ,15, 2181-2187 (2023) arXiv

2022

  1. 65) Control of molecular orbital ordering using a van der Waals monolayer ferroelectric Mohammad Amini, Orlando J. Silveira, Viliam Vaňo, Jose L. Lado, Adam S. Foster, Peter Liljeroth, Shawulienu Kezilebieke Advanced Materials, 2206456 (2022) arXiv
  2. 66) Controlling magnetic frustration in 1T-TaS2 via Coulomb engineered long-range interactions Guangze Chen, Malte Rösner, Jose L. Lado J. Phys.: Condens. Matter 34 485805 (2022) arXiv
  3. 67) Impurity-induced excitations in a topological two-dimensional ferromagnet/superconductor van der Waals moiré heterostructure Maryam Khosravian, Jose L. Lado Phys. Rev. Materials 6, 094010 (2022) arXiv
  4. 68) Designing quantum many-body matter with conditional generative adversarial networks Rouven Koch, Jose L. Lado Phys. Rev. Research 4, 033223 (2022) arXiv
  5. 69) Topological multiferroic order in twisted transition metal dichalcogenide bilayers Mikael Haavisto, J. L. Lado, Adolfo O. Fumega SciPost Phys. 13, 052 (2022) arXiv
  6. 70) Lee-Yang theory of the two-dimensional quantum Ising model Pascal M. Vecsei, Jose L. Lado, Christian Flindt Phys. Rev. B 106, 054402 (2022) arXiv
  7. 71) Noncontact Andreev Reflection as a Direct Probe of Superconductivity on the Atomic Scale Wonhee Ko, Jose L. Lado, Petro Maksymovych Nano Lett. 22, 10, 4042–4048 (2022)
  8. 72) Nonunitary multiorbital superconductivity from competing interactions in Dirac materials Tobias M. R. Wolf, Maximilian F. Holst, Manfred Sigrist, Jose L. Lado Phys. Rev. Research 4, L012036 (2022) arXiv
  9. 73) Confinement-engineered superconductor to correlated-insulator transition in a van der Waals monolayer Somesh Chandra Ganguli, Viliam Vaňo, Shawulienu Kezilebieke, Jose L. Lado, Peter Liljeroth Nano Letters, 22, 5, 1845–1850 (2022) arXiv
  10. 74) Microscopic origin of multiferroic order in monolayer NiI2 Adolfo O. Fumega, J. L. Lado 2D Materials 9 025010 (2022) arXiv
  11. 75) Controlling magnetism through Ising superconductivity in magnetic van der Waals heterostructures Faluke Aikebaier, Tero T. Heikkilä, J. L. Lado Phys. Rev. B 105, 054506 (2022) arXiv
  12. 76) Designing spin-textured flat bands in twisted graphene multilayers via helimagnet encapsulation Guangze Chen, Maryam Khosravian, Jose L. Lado, Aline Ramires 2D Materials, 9 024002 (2022) arXiv
  13. 77) Non-Hermitian many-body topological excitations in interacting quantum dots Timo Hyart, Jose L. Lado Phys. Rev. Research 4, L012006 (2022) arXiv
  14. 78) Moiré-Enabled Topological Superconductivity Shawulienu Kezilebieke, Viliam Vaňo, Md N. Huda, Markus Aapro, Somesh Chandra Ganguli, Peter Liljeroth, Jose L. Lado Nano Lett. 2022, 22, 1, 328-333 arXiv

2021

  1. 79) Artificial heavy fermions in a van der Waals heterostructure Viliam Vaňo, Mohammad Amini, Somesh Chandra Ganguli, Guangze Chen, Jose L. Lado, Shawulienu Kezilebieke, Peter Liljeroth Nature 599, 582–586 (2021) arXiv
  2. 80) Kondo-lattice-mediated interactions in flat band systems Pramod Kumar, Guangze Chen, J. L. Lado Phys. Rev. Research 3, 043113 (2021) arXiv
  3. 81) Tunable moire spinons in magnetically encapsulated twisted van der Waals quantum spin-liquids Guangze Chen, J. L. Lado Phys. Rev. Research 3, 033276 (2021) arXiv
  4. 82) Lee-Yang theory of criticality in interacting quantum many-body systems Timo Kist, Jose L. Lado, Christian Flindt Phys. Rev. Research 3, 033206 (2021) arXiv
  5. 83) Neural network enhanced hybrid quantum many-body dynamical distributions Rouven Koch, Jose L. Lado Phys. Rev. Research 3, 033102 (2021) arXiv
  6. 84) Emulating heavy fermions in twisted trilayer graphene Aline Ramires, Jose L. Lado Phys. Rev. Lett. 127, 026401 (2021) arXiv
  7. 85) Spin-orbit correlations and exchange-bias control in twisted Janus dichalcogenide multilayers D. Soriano, J. L. Lado New J. Phys. 23 073038 (2021) arXiv
  8. 86) Correlation-induced valley topology in buckled graphene superlattices Antonio L. R. Manesco, Jose L. Lado 2D Materials 8 035057 (2021) arXiv
  9. 87) Observation of Yu-Shiba-Rusinov states in superconducting graphene E. Cortés-del Río, J.L. Lado, V. Cherkez, P. Mallet, J-Y. Veuillen, J.C. Cuevas, J.M. Gómez-Rodríguez, J. Fernández-Rossier, I. Brihuega Advanced Materials, 33(22), 2008113 (2021) arXiv
  10. 88) Synthesis, Engineering, and Theory of 2D van der Waals Magnets M. Blei, J. L. Lado, Q. Song, D. Dey, O. Erten, V. Pardo, R. Comin, S. Tongay, A.S. Botana Applied Physics Reviews 8, 021301 (2021) arXiv
  11. 89) Many-body Majorana-like zero modes without gauge symmetry breaking V. Vadimov, T. Hyart, J. L. Lado, M. Möttönen, T. Ala-Nissila Phys. Rev. Research 3, 023002 (2021) arXiv
  12. 90) Inducing a many-body topological state of matter through Coulomb-engineered local interactions Malte Rösner, Jose L. Lado Phys. Rev. Research 3, 013265 (2021) arXiv
  13. 91) Quasiperiodic criticality and spin-triplet superconductivity in superconductor-antiferromagnet moire patterns Maryam Khosravian, J. L. Lado Phys. Rev. Research 3, 013262 (2021) arXiv
  14. 92) Interaction-induced topological superconductivity in antiferromagnet-superconductor junctions Senna S. Luntama, Päivi Törmä, Jose L. Lado Phys. Rev. Research 3, L012021 (2021) arXiv
  15. 93) Spontaneous Valley Spirals in Magnetically Encapsulated Twisted Bilayer Graphene Tobias M. R. Wolf, Oded Zilberberg, Gianni Blatter, Jose L. Lado Phys. Rev. Lett. 126, 056803 (2021) arXiv
  16. 94) Dynamical topological excitations in parafermion chains Vilja Kaskela, J. L. Lado Phys. Rev. Research 3, 013095 (2021) arXiv

2020

  1. 95) Anti-chiral states in twisted graphene multilayers M. Michael Denner, J. L. Lado, Oded Zilberberg Phys. Rev. Research 2, 043190 (2020) arXiv
  2. 96) Correlations in the elastic Landau level of spontaneously buckled graphene Antonio L. R. Manesco, Jose L. Lado, Eduardo V. Ribeiro, Gabrielle Weber, Durval Rodrigues Jr 2D Materials, Volume 8, Number 1 (2020) arXiv
  3. 97) Impurity-induced resonant spinon zero modes in Dirac quantum spin-liquids Guangze Chen, J. L. Lado Phys. Rev. Research 2, 033466 (2020) arXiv
  4. 98) Electrical band flattening, valley flux, and superconductivity in twisted trilayer graphene Alejandro Lopez-Bezanilla, J. L. Lado Phys. Rev. Research 2, 033357 (2020) arXiv
  5. 99) Exchange-bias controlled correlations in magnetically encapsulated twisted van der Waals dichalcogenides D. Soriano, J. L. Lado Journal of Physics D: Applied Physics, Volume 53, Number 47 arXiv
  6. 100) Accessing new magnetic regimes by tuning the ligand spin-orbit coupling in van der Waals magnets T. A. Tartaglia, J. N. Tang, J. L. Lado, F. Bahrami, M. Abramchuk, G. T. McCandless, M. C. Doyle, K. S. Burch, Y. Ran, J. Y. Chan, F. Tafti Science Advances Vol. 6, no. 30, eabb9379 (2020) arXiv
  7. 101) Quantum confinement of Dirac quasiparticles in graphene patterned with subnanometer precision E. Cortés-del Río, P. Mallet, H. González-Herrero, J.L. Lado, J. Fernández-Rossier, J.M. Gómez-Rodríguez, J-Y. Veuille, I. Brihuega Advanced Materials, 32(30), 2001119 (2020) arXiv
  8. 102) Solitonic in-gap modes in a superconductor-quantum antiferromagnet interface J. L. Lado, M. Sigrist Phys. Rev. Research 2, 023347 (2020) arXiv
  9. 103) Emergence of criticality through a cascade of delocalization transitions in quasiperiodic chains V. Goblot, A. Štrkalj, N. Pernet, J. L. Lado, C. Dorow, A. Lemaître, L. Le Gratiet, A. Harouri, I. Sagnes, S. Ravets, A. Amo, J. Bloch, O. Zilberberg Nature Physics 16, 832–836 (2020) arXiv

2019

  1. 104) Single spin resonance driven by electric modulation of the g factor anisotropy Alejandro Ferrón, Santiago A. Rodríguez, Sergio S. Gómez, Jose L. Lado, Joaquín Fernández-Rossier Phys. Rev. Research 1, 033185 (2019) arXiv
  2. 105) Detecting non-unitary multiorbital superconductivity with Dirac points at finite energies J. L. Lado, M. Sigrist Phys. Rev. Research 1, 033107 (2019) arXiv
  3. 106) Emergent quantum matter in graphene nanoribbons J. L. Lado, R. Ortiz, J. Fernández-Rossier Chapter 4 of the book "Graphene Nanoribbons", Edited by A. Tejeda, P. Seneor, L. Brey, IOP Publishing (2019) arXiv
  4. 107) Gap Opening in Twisted Double Bilayer Graphene by Crystal fields Peter Rickhaus, Giulia Zheng, Jose L. Lado, Yongjin Lee, Annika Kurzmann, Marius Eich, Riccardo Pisoni, Chuyao Tong, Rebekka Garreis, Carolin Gold, Michele Masseroni, Takashi Taniguchi, Kenji Wantanabe, Thomas Ihn, Klaus Ensslin Nano Lett. 19, 12, 8821-8828 (2019) arXiv
  5. 108) Topological spin excitations in Harper-Heisenberg spin chains J. L. Lado, Oded Zilberberg Phys. Rev. Research 1, 033009 (2019) arXiv
  6. 109) Electrically tunable flat bands and magnetism in twisted bilayer graphene T. M. R. Wolf, J. L. Lado, G. Blatter, O. Zilberberg Phys. Rev. Lett. 123, 096802 (2019) arXiv
  7. 110) Defect-induced magnetism and Yu-Shiba-Rusinov states in twisted bilayer graphene A. Lopez-Bezanilla, J. L. Lado Phys. Rev. Materials 3, 084003 (2019) arXiv
  8. 111) Impurity-induced triple point fermions in twisted bilayer graphene Aline Ramires, J. L. Lado Phys. Rev. B 99, 245118 (2019) arXiv
  9. 112) Tuning the Exchange Bias on a Single Atom from 1 mT to 10 T Kai Yang, William Paul, Fabian D. Natterer, Jose L. Lado, Yujeong Bae, Philip Willke, Taeyoung Choi, Alejandro Ferrón, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Phys. Rev. Lett. 122, 227203 (2019) arXiv
  10. 113) Interaction driven surface Chern insulator in nodal line semimetals Wei Chen, J. L. Lado Phys. Rev. Lett. 122, 016803 (2019) arXiv

2018

  1. 114) Electrically controlled nuclear polarization of individual atoms Kai Yang, Philip Willke, Yujeong Bae, Alejandro Ferrón, Jose L. Lado, Arzhang Ardavan, Joaquín Fernández-Rossier, Andreas J. Heinrich & Christopher P. Lutz Nature Nanotechnology 13, 1120–1125 (2018)
  2. 115) Electrically tunable gauge fields in tiny-angle twisted bilayer graphene A. Ramires, J. L. Lado Phys. Rev. Lett. 121, 146801 (2018) arXiv
  3. 116) Two-dimensional topological superconductivity with antiferromagnetic insulators J. L. Lado, M. Sigrist Phys. Rev. Lett. 121, 037002 (2018) arXiv
  4. 117) Probing magnetism in 2D van der Waals crystalline insulators via electron tunneling Dahlia R. Klein, David MacNeill, Jose L. Lado, David Soriano, Efrén Navarro-Moratalla, Kenji Watanabe, Takashi Taniguchi, Soham Manni, Paul Canfield, Joaquín Fernández-Rossier, Pablo Jarillo-Herrero Science 360.6394 (2018): 1218-1222 arXiv
  5. 118) Electrical spin manipulation in graphene nanostructures R. Ortiz, N. A. García-Martínez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 97, 195425 (2018) arXiv
  6. 119) Electron and Cooper-pair transport across a single magnetic molecule explored with a scanning tunneling microscope J. Brand, S. Gozdzik, N. Néel, J. L. Lado, J. Fernández-Rossier, J. Kröger Phys. Rev. B 97, 195429 (2018) arXiv
  7. 120) Real space mapping of topological invariants using artificial neural networks D. Carvalho, N. A. García-Martínez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 97, 115453 (2018) arXiv
  8. 121) Hyperfine interaction of individual atoms on a surface Philip Willke, Yujeong Bae, Kai Yang, Jose L. Lado, Alejandro Ferrón, Taeyoung Choi, Arzhang Ardavan, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Science 362.6412 (2018): 336-339

2017

  1. 122) Engineering the Eigenstates of Coupled Spin-1/2 Atoms on a Surface Kai Yang, Yujeong Bae, William Paul, Fabian D. Natterer, Philip Willke, Jose L. Lado, Alejandro Ferrón, Taeyoung Choi, Joaquín Fernández-Rossier, Andreas J. Heinrich, Christopher P. Lutz Phys. Rev. Lett. 119, 227206 (2017) arXiv
  2. 123) Exchange mechanism for electron paramagnetic resonance of individual adatoms J. L. Lado, A. Ferrón, J. Fernández-Rossier Phys. Rev. B 96, 205420 (2017) arXiv
  3. 124) Characterization of highly crystalline lead iodide nanosheets prepared by room-temperature solution processing Riccardo Frisenda, Joshua O. Island, Jose L. Lado, Emerson Giovanelli, Patricia Gant, Philipp Nagler, Sebastian Bange, John M. Lupton, Christian Schüller, Aday Molina-Mendoza, Lucía Aballe, Michael Foerster, Tobias Korn, Miguel Angel Niño, David Perez de Lara, Emilio M. Pérez, Joaquín Fernández-Rossier, Andres Castellanos-Gomez Nanotechnology 28.45 (2017): 455703 arXiv
  4. 125) Electrical Detection of Individual Skyrmions in Graphene Devices F. Finocchiaro, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 96, 155422 (2017) arXiv
  5. 126) Electrically controllable magnetism in twisted bilayer graphene Luis A. González-Árraga, J. L. Lado, Francisco Guinea, Pablo San-Jose Phys. Rev. Lett. 119, 107201 (2017) arXiv
  6. 127) Anomalous magnetism in hydrogenated graphene N. A. García-Martínez, J. L. Lado, D. Jacob, J. Fernández-Rossier Phys. Rev. B 96, 024403 (2017) arXiv
  7. 128) On the origin of magnetic anisotropy in two dimensional CrI3 J. L. Lado, J. Fernández-Rossier 2D Materials, Volume 4, Number 3 (2017) arXiv
  8. 129) Emergence of quasiparticle Bloch states in artificial crystals crafted atom-by-atom Jan Girovsky, Jose L. Lado, Floris E. Kalff, Eleonora Fahrenfort, Lucas J.J.M. Peters, Joaquín Fernández-Rossier, Alexander F. Otte SciPost Phys. 2, 020 (2017) arXiv
  9. 130) Electronic Transport in Gadolinium Atomic-Size Contacts B. Olivera, C. Salgado, J. L. Lado, A. Karimi, V. Henkel, E. Scheer, J. Fernández-Rossier, J.J. Palacios, C. Untiedt Phys. Rev. B 95, 075409 (2017) arXiv

2016

  1. 131) Quantum spin Hall effect in rutile-based oxide multilayers J. L. Lado, D. Guterding, P. Barone, R. Valenti, V. Pardo Phys. Rev. B 94, 235111 (2016) arXiv
  2. 132) Dirac topological insulator in the dz2 manifold of a honeycomb oxide J. L. Lado, V. Pardo Phys. Rev. B 94, 115141 (2016) arXiv
  3. 133) Engineering spin exchange in non-bipartite graphene zigzag edges R. Ortiz, J. L. Lado, M. Melle-Franco, J. Fernández-Rossier Phys. Rev. B 94, 094414 (2016) arXiv
  4. 134) Landau Levels in two-dimensional materials using Wannier Hamiltonians obtained by first principles J. L. Lado, J. Fernández-Rossier 2D Materials. 3 035023 (2016) arXiv
  5. 135) A kilobyte rewritable atomic memory F. E. Kalff, M. P. Rebergen, E. Fahrenfort, J. Girovsky, R. Toskovic, J. L. Lado, J. Fernández-Rossier, A. F. Otte Nature Nanotechnology 11, 926–929 (2016) arXiv
  6. 136) Centimeter-scale synthesis of ultrathin layered MoO3 by van der Waals epitaxy Aday J. Molina-Mendoza, Jose Luis Lado, Joshua Island, Miguel Angel Niño, Lucía Aballe, Michael Foerster, Flavio Y. Bruno, Herre S. J. van der Zant, Gabino Rubio-Bollinger, Nicolas Agraït, Emilio Perez, Joaquín Fernández-Rossier, Andres Castellanos-Gomez Chem. Mater., 2016, 28 (11), pp 4042-4051 arXiv
  7. 137) Unconventional Yu-Shiba-Rusinov states in hydrogenated graphene J. L. Lado, J. Fernández-Rossier 2D Materials 3 (2), 025001 (2016) arXiv
  8. 138) Topological features of engineered arrays of adsorbates in honeycomb lattices Luis A. González-Árraga, J. L. Lado, F. Guinea Physica B: Condensed Matter 496, 1-8 (2016) arXiv

2015

  1. 139) Majorana Zero Modes in Graphene P. San-Jose, J. L. Lado, R. Aguado, F. Guinea, J. Fernández-Rossier Physical Review X 5 (4), 041042 (2015) arXiv
  2. 140) Edge states in graphene-like systems J. L. Lado, N. Garcia-Martinez, J. Fernández-Rossier Synthetic Metals 210, 56-67 (2015) arXiv
  3. 141) Electronic properties of transition metal atoms on Cu2N/Cu(100) A. Ferrón, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 92, 174407 (2015) arXiv
  4. 142) Non-collinear vs collinear description of the Ir-based one-t2g -hole perovskite-related compounds: SrIrO3 and Sr2IrO4 J. L. Lado, V. Pardo Phys. Rev. B 92, 155151 (2015) arXiv
  5. 143) Quantum Anomalous Hall effect in graphene coupled to skyrmions J. L. Lado, J. Fernández-Rossier Phys. Rev. B 92, 115433 (2015) arXiv
  6. 144) Controlled complete suppression of single-atom inelastic spin and orbital cotunnelling B. Bryant, R. Toskovic, A. Ferrón, J. L. Lado, A. Spinelli, J. Fernández-Rossier, A. F. Otte Nano Letters 15 (10), 6542-6546 (2015) arXiv
  7. 145) Quantum spin Hall phase in multilayer graphene N. Garcia-Martinez, J. L. Lado, J. Fernández-Rossier Phys. Rev. B 91, 235451 (2015) arXiv

2014

  1. 146) Noncollinear magnetic phases and edge states in graphene quantum Hall bars J. L. Lado, J. Fernández-Rossier Phys. Rev. B 90, 165429 (2014) arXiv
  2. 147) Magnetic edge anisotropy in graphene-like honeycomb crystals J. L. Lado, J. Fernández-Rossier Physical Review Letters 113, 027203 (2014) arXiv

2013

  1. 148) Ab initio study of Z2 topological phases in perovskite (111) (SrTiO3)7/(SrIrO3)2 and (KTaO3)7/(KPtO3)2 multilayers J. L. Lado, V. Pardo, D. Baldomir Phys. Rev. B 88, 155119 (2013)
  2. 149) Quantum Hall effect in gapped graphene heterojunctions J. L. Lado, J. W. González, J. Fernández-Rossier Phys. Rev. B 88, 035448 (2013) arXiv

21 preprints not yet published in a journal.

2026

  1. 1) Electrical Control of Altermagnetism in a Quasi-1D Magnet Alberto M. Ruiz, Cuiju Yu, Diego López-Alcalá, Jose L. Lado, Adolfo O. Fumega, José J. Baldoví arXiv:2607.16856v1
  2. 2) Emergent ferromagnetism in the NiI2-NbSe2 van der Waals heterostructure Büşra Gamze Arslan, Mohammad Amini, Ziying Wang, Alessandro Orsini, Jose L. Lado, Adolfo O. Fumega, Robert Drost, Peter Liljeroth arXiv:2607.21218v1
  3. 3) Interaction-driven electronic ferroelectricity in van der Waals heterostructures Ziying Wang, Ana Vera Montoto, Mohammad Amini, Yuxiao Ding, Jose L. Lado, Robert Drost, Adolfo O. Fumega, Peter Liljeroth arXiv:2607.24087v1
  4. 4) Tensor network solvers for ultra-large tight-binding Hamiltonians: algorithms and applications Tiago V. C. Antão, Anouar Moustaj, Yitao Sun, Jose L. Lado arXiv:2607.00991v2
  5. 5) Learning Inhomogeneous Heisenberg Hamiltonians in Nanographene Spin Chains Greta Lupi, Saketh Ravuri, Chenxiao Zhao, Weidan Zhang, Cesare Roncaglia, Renxiang Liu, Xinliang Feng, Daniele Passerone, Pascal Ruffieux, Roman Fasel, Jose L. Lado, Gonçalo Catarina arXiv:2606.29281v1
  6. 6) Real-space spectral functions of three-dimensional billion-size topological non-Hermitian matter with tensor networks Yitao Sun, Jose L. Lado, Guangze Chen arXiv:2606.16424v2
  7. 7) Hamiltonian learning for spin-spiral moiré magnets from electronic magnetotransport Fedor Nigmatulin, Greta Lupi, Jose L. Lado, Zhipei Sun arXiv:2604.02959
  8. 8) Intrinsic i-wave altermagnetism in 2D graphene superlattices Cuiju Yu, Jose L. Lado arXiv:2604.19661
  9. 9) Moire Mott correlated mosaics in twisted bilayer 1T-TaS2 Ana Vera Montoto, Jose L. Lado, Adolfo O. Fumega arXiv:2604.02001
  10. 10) Atomically Reconfigurable Single-Molecule Optoelectronics Atif Ghafoor, Santeri Neuvonen, Thinh Tran, Oscar Moreno Segura, Yitao Sun, Yaroslav Pavlyukh, Riku Tuovinen, Jose L. Lado, Shawulienu Kezilebieke arXiv:2603.29286
  11. 11) Tensor-network methodology for super-moiré excitons beyond one billion sites Anouar Moustaj, Yitao Sun, Tiago V. C. Antão, Lumen Eek, Jose L. Lado arXiv:2603.02011
  12. 12) Fingerprinting superconductors by disentangling Andreev and quasiparticle currents across tunable tunnel junctions Petro Maksymovych, Sang Yong Song, Benjamin Lawrie, Wonhee Ko, Jose L. Lado arXiv:2601.20798
  13. 13) Molecular Hamiltonian learning from setpoint-dependent scanning tunneling spectroscopy Greta Lupi, Adolfo O. Fumega, Mohammad Amini, Robert Drost, Peter Liljeroth, Jose L. Lado arXiv:2601.19371v1

2025

  1. 14) Atomic-scale probe of molecular magneto-electric coupling Mohammad Amini, Linghao Yan, Orlando J. Silveira, Adolfo O. Fumega, Viliam Vaňo, Jose L. Lado, Shawulienu Kezilebieke, Peter Liljeroth, Robert Drost arXiv:2512.07489v1
  2. 15) Controllable Superconductivity in Suspended van der Waals Materials Ruihuan Fang, Cuiju Yu, Youqiang Huang, Tosson Elalaily, Yuvraj Chaudhry, Yaoqiang Zhou, Andres Castellanos-Gomez, Sanshui Xiao, Jiwon Park, Hyunyong Choi, Fida Ali, Hanlin Fang, Jose L. Lado, Pertti Hakonen, Zhipei Sun arXiv:2511.05763
  3. 16) Moiré modulated quantum spin liquid candidate 1T-TaSe2 Ziying Wang, Adolfo O. Fumega, Ana Vera Montoto, Mohammad Amini, Büşra Gamze Arslan, Aleš Cahlík, Yuxiao Ding, Jose L. Lado, Robert Drost, Peter Liljeroth arXiv:2511.03311
  4. 17) Hamiltonian learning quantum magnets with dynamical impurity tomography Netta Karjalainen, Greta Lupi, Rouven Koch, Adolfo O. Fumega, Jose L. Lado arXiv:2510.18613
  5. 18) Observation of electromagnons in a monolayer multiferroic Mohammad Amini, Tiago V. C. Antão, Liwei Jing, Ziying Wang, Antti Karjasilta, Robert Drost, Shawulienu Kezilebieke, Jose L. Lado, Adolfo O. Fumega, Peter Liljeroth arXiv:2510.08253
  6. 19) Exploring Charge Density Waves in two-dimensional NbSe2 Norma Rivano, Francesco Libbi, Chuin Wei Tan, Christopher Cheung, Jose Lado, Arash Mostofi, Philip Kim, Johannes Lischner, Adolfo O. Fumega, Boris Kozinsky, Zachary A. H. Goodwin arXiv:2504.13675

2024

  1. 20) Electrical control of magnons in multiferroic NiI2 Andrey Rybakov, Adolfo O. Fumega, Dorye L. Esteras, Jose L. Lado, José J. Baldoví arXiv:2407.21645

2021

  1. 21) Designer quantum matter in van der Waals heterostructures Jose L. Lado, Peter Liljeroth arXiv:2102.11779v1

7 invited commentaries and outreach articles.

2026

  1. 1) Nobel Prize (Quantum Physics in Action) Jose Lado Europhysics News 57, 8 (2026)

2025

  1. 2) Nobel prize in physics 2025: Bringing quantum tunneling all the way up to the human scale Jose Lado Europhysics News 56, 27-28 (2025)
  2. 3) Quantum science and technology Lukas Gallmann, Jose Lado, Jan Meijer, Christophe Rossel Europhysics News 56, 14 (2025)

2024

  1. 4) Doping a frustrated correlated van der Waals magnet Jose L. Lado Nature Materials 23, 1013–1014 (2024)
  2. 5) Engineering exotic quantum matter in twisted van der Waals materials Jose Lado Europhysics News 55, 24-27 (2024)

2021

  1. 6) Putting a twist on spintronics Jose L. Lado Science, 374, 6571 (2021)
  2. 7) A layered unconventional superconductor Jose L. Lado, Peter Liljeroth News & Views, Nature Physics (2021)
Papers per yearPapers per year0153020262023202020172014yearpapers2013: 22014: 22015: 72016: 82017: 92018: 82019: 102020: 92021: 172022: 142023: 162024: 202025: 232026: 25
Papers, cumulativePapers, cumulative010020020262023202020172014yearpapers2013: 22014: 42015: 112016: 192017: 282018: 362019: 462020: 552021: 722022: 862023: 1022024: 1222025: 1452026: 170
Citations per yearCitations per year0500100020262023202020172014yearcitations2014: 52015: 262016: 612017: 1122018: 2002019: 3952020: 5562021: 6592022: 6252023: 7542024: 7842025: 8072026: 516
Citations, cumulativeCitations, cumulative03000600020262023202020172014yearcitations2014: 52015: 312016: 922017: 2042018: 4042019: 7992020: 13552021: 20142022: 26392023: 33932024: 41772025: 49842026: 5500
Papers as last author, per yearPapers as last author, per year061220262024202220202018yearpapers2017: 02018: 12019: 32020: 32021: 112022: 82023: 72024: 82025: 72026: 8
Papers as last author, cumulativePapers as last author, cumulative0306020262024202220202018yearpapers2017: 02018: 12019: 42020: 72021: 182022: 262023: 332024: 412025: 482026: 56
Papers in selected journalsPapers in selected journalsNature, ScienceNature, Science: 33Nature Nano./Mater./Phys.Nature Nano./Mater./Phys.: 55Nature Comm., Sci. Adv., Adv. Mater.Nature Comm., Sci. Adv., Adv. Mater.: 1010Phys. Rev. Lett.Phys. Rev. Lett.: 2020Nano LettersNano Letters: 1111Phys. Rev. B/Research/Applied/Materials, SciPostPhys. Rev. B/Research/Applied/Materials, SciPost: 6868papers
Not plotted, for simplicity: Physical Review X, 2D Materials, J. Am. Chem. Soc., Nanoscale, npj 2D Materials and Applications, New J. Phys., J. Phys.: Condens. Matter, and others.

Citation counts from OpenAlex, last refreshed 2026-09-05.