Superconductivity of and polyhydrides IA Kruglov, DV Semenok, H Song, R Szczęśniak, IA Wrona, R Akashi, ... Physical Review B 101 (2), 024508, 2020 | 107 | 2020 |
The numerical solution of the imaginary-axis Eliashberg equations R Szczęśniak Acta Physica Polonica A 109 (2), 179-186, 2006 | 104 | 2006 |
Atomically Thin 1T-FeCl2 Grown by Molecular-Beam Epitaxy X Zhou, B Brzostowski, A Durajski, M Liu, J Xiang, T Jiang, Z Wang, ... The Journal of Physical Chemistry C 124 (17), 9416-9423, 2020 | 74 | 2020 |
Non-BCS thermodynamic properties of H2S superconductor AP Durajski, R Szczęśniak, Y Li Physica C: Superconductivity and its Applications 515, 1-6, 2015 | 70 | 2015 |
High‐temperature study of superconducting hydrogen and deuterium sulfide AP Durajski, R Szczȩśniak, L Pietronero Annalen der Physik 528 (5), 358-364, 2016 | 62 | 2016 |
Quantum steering and entanglement in three-mode triangle Bose–Hubbard system JK Kalaga, W Leoński, R Szczȩśniak Quantum Information Processing 16, 1-19, 2017 | 61 | 2017 |
The superconducting state in metallic hydrogen under pressure at 2000 gpa R Szczȩs̀niak, MW Jarosik Solid state communications 149 (45-46), 2053-2057, 2009 | 58 | 2009 |
First-principles study of superconducting hydrogen sulfide at pressure up to 500 GPa AP Durajski, R Szczęśniak Scientific Reports 7 (1), 4473, 2017 | 48 | 2017 |
Pairing Mechanism for the High-TC Superconductivity: Symmetries and Thermodynamic Properties R Szczęśniak PloS One 7 (4), e31873, 2012 | 44 | 2012 |
From LaH10 to room–temperature superconductors M Kostrzewa, KM Szczęśniak, AP Durajski, R Szczęśniak Scientific reports 10 (1), 1592, 2020 | 42 | 2020 |
Superconductivity in bilayer graphene intercalated with alkali and alkaline earth metals AP Durajski, KM Skoczylas, R Szczȩśniak Physical Chemistry Chemical Physics 21 (11), 5925-5931, 2019 | 42 | 2019 |
Pressure-induced superconductivity in the fcc phase of lithium: Strong-couplingapproach R Szcze, MW Jarosik, D Szcze Physica B: Condensed Matter 405 (24), 4897-4902, 2010 | 42 | 2010 |
Superconducting state above the boiling point of liquid nitrogen in the GaH3 compound R Szczȩśniak, AP Durajski Superconductor Science and Technology 27 (1), 015003, 2013 | 40 | 2013 |
The selected thermodynamic properties of the strong-coupled superconductors in the van Hove scenario R Szczȩśniak Solid state communications 138 (7), 347-352, 2006 | 40 | 2006 |
Pressure effects on the unconventional superconductivity of noncentrosymmetric B Wiendlocha, R Szczȩśniak, AP Durajski, M Muras Physical Review B 94 (13), 134517, 2016 | 38 | 2016 |
Influence of lithium doping on the thermodynamic properties of graphene based superconductors D Szczȩśniak, AP Durajski, R Szczȩśniak Journal of Physics: Condensed Matter 26 (25), 255701, 2014 | 36 | 2014 |
Isotope effect in superconducting lanthanum hydride under high compression AP Durajski, R Szczęśniak, Y Li, C Wang, JH Cho Physical Review B 101 (21), 214501, 2020 | 35 | 2020 |
Study of the superconducting phase in silicene under biaxial tensile strain AP Durajski, D Szczȩśniak, R Szczȩśniak Solid state communications 200, 17-21, 2014 | 32 | 2014 |
The thermodynamic properties of the MgB2 superconductor: The two-band Eliashberg equations R Szczȩs̀niak Solid state communications 145 (3), 137-142, 2008 | 32 | 2008 |
Superconducting state in the atomic metallic hydrogen just above the pressure of the molecular dissociation R Szcze, D Szcze, EA Drzazga Solid state communications 152 (22), 2023-2026, 2012 | 31 | 2012 |