| Gate-tunable black phosphorus spin valve with nanosecond spin lifetimes A Avsar, JY Tan, M Kurpas, M Gmitra, K Watanabe, T Taniguchi, J Fabian, ... Nature Physics 13 (9), 888-893, 2017 | 156 | 2017 |
| Spin-orbit coupling in elemental two-dimensional materials M Kurpas, PEF Junior, M Gmitra, J Fabian arXiv preprint arXiv:1907.05152, 2019 | 85 | 2019 |
| The electronic thickness of graphene P Rickhaus, MH Liu, M Kurpas, A Kurzmann, Y Lee, H Overweg, M Eich, ... Science advances 6 (11), eaay8409, 2020 | 70 | 2020 |
| Spin-orbit coupling and spin relaxation in phosphorene: Intrinsic versus extrinsic effects M Kurpas, M Gmitra, J Fabian arXiv preprint arXiv:1902.07957, 2019 | 68 | 2019 |
| kp theory for phosphorene: Effective g-factors, Landau levels, and excitons PE Faria Junior, M Kurpas, M Gmitra, J Fabian Phys. Rev. B 100, 115203, 2019 | 55 | 2019 |
| Flux qubit on a mesoscopic nonsuperconducting ring E Zipper, M Kurpas, M Szeląg, J Dajka, M Szopa Physical Review B—Condensed Matter and Materials Physics 74 (12), 125426, 2006 | 52 | 2006 |
| First-principles insights into the spin-valley physics of strained transition metal dichalcogenides monolayers PEF Junior, K Zollner, T Woźniak, M Kurpas, M Gmitra, J Fabian New Journal of Physics 24 (8), 083004, 2022 | 46 | 2022 |
| Wave function engineering in quantum dot–ring nanostructures E Zipper, M Kurpas, MM Maśka New Journal of Physics 14 (9), 093029, 2012 | 41 | 2012 |
| Spin relaxation in semiconductor quantum rings and dots—a comparative study E Zipper, M Kurpas, J Sadowski, MM Maśka Journal of Physics: Condensed Matter 23 (11), 115302, 2011 | 37 | 2011 |
| First-principles determination of spin–orbit coupling parameters in two-dimensional materials K Zollner, M Kurpas, M Gmitra, J Fabian Nature Reviews Physics, 1-15, 2025 | 22 | 2025 |
| Spin properties of black phosphorus and phosphorene, and their prospects for spincalorics M Kurpas, M Gmitra, J Fabian Journal of Physics D: Applied Physics 51 (17), 174001, 2018 | 20 | 2018 |
| Learning by confusion approach to identification of discontinuous phase transitions M Richter-Laskowska, M Kurpas, MM Maśka Physical Review E 108 (2), 024113, 2023 | 17 | 2023 |
| Entanglement of qubits via a nonlinear resonator M Kurpas, J Dajka, E Zipper Journal of Physics: Condensed Matter 21 (23), 235602, 2009 | 14 | 2009 |
| Intrinsic and extrinsic spin-orbit coupling and spin relaxation in monolayer M Kurpas, J Fabian Physical Review B 103 (12), 125409, 2021 | 13 | 2021 |
| Giant asymmetric proximity-induced spin–orbit coupling in twisted graphene/SnTe heterostructure M Milivojević, M Gmitra, M Kurpas, I Štich, J Fabian 2D Materials 11 (3), 035036, 2024 | 10 | 2024 |
| Charge transport through a semiconductor quantum dot-ring nanostructure M Kurpas, B Kędzierska, I Janus-Zygmunt, A Gorczyca-Goraj, E Wach, ... Journal of Physics: Condensed Matter 27 (26), 265801, 2015 | 10 | 2015 |
| Entanglement swapping between electromagnetic field modes and matter qubits M Kurpas, E Zipper The European Physical Journal D 50 (2), 201-206, 2008 | 10 | 2008 |
| Entanglement of distant flux qubits mediated by non-classical electromagneticfield E Zipper, M Kurpas, J Dajka, M Kuś Journal of Physics: Condensed Matter 20 (27), 275219, 2008 | 9 | 2008 |
| Friedel oscillations and chiral superconductivity in monolayer NbSe2 J Siegl, A Bleibaum, W Wan, M Kurpas, J Schliemann, MM Ugeda, ... Nature Communications 16 (1), 8228, 2025 | 8 | 2025 |
| Spin–orbit coupling in buckled monolayer nitrogene P Jureczko, M Kurpas Scientific Reports 12 (1), 3201, 2022 | 8 | 2022 |