BibTeX

List of publications

2025
  1. K. A. Kempa, J. Karch, I. A. Wrona, A. P. Durajski,
    Electronic and optical properties of monolayer magnesium diboride under biaxial strain, Computational Materials Science 246, 113343 (2025).
2024
  1. I. A. Wrona, P. Niegodajew, Y. Li, A. P. Durajski,
    Prediction of p-block-based ternary superconductors XC2H8 at low pressure, npj Computational Materials 10, 289 (2024).
  2. M. Liu, W. Cui, J. Shi, A. P. Durajski, J. Hao, Y. Li,
    Superconductivity in Ce-B-H system at high pressure, Journal of Materials Chemistry C 12, 16881–16887 (2024).
  3. T. Gu, W. Cui, J. Hao, J. Shi, A. P. Durajski, H. Liu, Y. Li,
    Prediction of high-Tc superconductivity under submegabar pressure in ternary actinium borohydrides, Physical Review B 110, 064105 (2024).
  4. I. A. Wrona, P. Niegodajew, A. P. Durajski,
    A recipe for an effective selection of promising candidates for high-temperature superconductors among binary hydrides, Materials Today Physics 46, 101499 (2024).
  5. I. A. Wrona, R. Szczȩśniak, A. P. Durajski,
    Ternary ScC2H8 superconductor at moderate pressure, The Journal of Physical Chemistry C 128, 9247–9255 (2024).
  6. G. T. Kasprzak, M. W. Jarosik, A. P. Durajski,
    Investigation of N3C5 and B3C5 bilayers as anode materials for Li-ion batteries by first-principles calculations, Scientific Reports 14, 11180 (2024).
  7. P. Song, A. P. Durajski, Z. Hou, A. Ghaffar, R. Dahule, R. Szczȩśniak, K. Hongo, R. Maezono,
    (La,Th)H10: potential high-Tc (242 K) superconductors stabilized thermodynamically below 200 GPa, The Journal of Physical Chemistry C 128, 2656–2665 (2024).
  8. K. Gao, W. Cui, J. Shi, A. P. Durajski, J. Hao, S. Botti, M. A. L. Marques, Y. Li,
    Prediction of high-Tc superconductivity in ternary actinium beryllium hydrides at low pressure, Physical Review B 109, 014501 (2024).
2023
  1. Z. Wu, Y. Sun, A. P. Durajski, F. Zheng, V. Antropov, K.-M. Ho, S. Wu,
    Effect of doping on the phase stability and superconductivity in LaH10, Physical Review Materials 7, L101801 (2023).
  2. A. P. Durajski, R. Szczesniak,
    First-principles estimation of low-pressure superconductivity in KC2H8 ternary hydride, Physica Status Solidi RRL 17, 2300043 (2023).
  3. K. A. Krok, M. M. Adamczyk, A. P. Durajski, R. Szczesniak,
    Critical temperature of the nonadiabatic superconducting state in mono- and bilayer systems, Physical Review B 108, 054512 (2023).
  4. A. P. Durajski, G. T. Kasprzak,
    Swelling effect of 2D BC7 anode material in Li-, Na- and Mg-ion energy storage systems, Physica B 660, 414902 (2023).
  5. G. T. Kasprzak, R. Szczesniak, A. P. Durajski,
    Computational insight into bilayer NC7 anode material for Li/Na/Mg-ion batteries, Computational Materials Science 225, 112194 (2023).
2022
  1. A. P. Durajski, R. Szczesniak,
    Tunable electronic properties of twisted graphene layers in high angles regime, Acta Physica Polonica A 142, 114–116 (2022).
  2. J. M. Truszkowski, M. W. Jarosik, A. P. Durajski, R. Szczesniak,
    The physical properties of muon cation: the ab initio results, Acta Physica Polonica A 142, 39–43 (2022).
  3. B. Brzostowski, A. P. Durajski, J. Wojtkiewicz, K. M. Gruszka,
    Geometric isomers of the (3,1) carbon nanotube: a theoretical study, Acta Physica Polonica A 142, 21–23 (2022).
  4. I. A. Domagalska, A. P. Durajski, K. Gruszka, I. A. Wrona, K. A. Krok, W. Leoński, R. Szczȩśniak,
    Balanced electron flow and the hydrogen bridge energy levels in Pt, Au, or Cu nanojunctions, Applied Nanoscience 12, 2595–2607 (2022).
  5. K. A. Krok, A. P. Durajski, R. Szczesniak,
    The Abraham-Lorentz force and the time evolution of a chaotic system: the case of charged classical and quantum Duffing oscillators, Chaos 32, 073130 (2022).
  6. G. T. Kasprzak, A. P. Durajski,
    Two-dimensional B2 C as a potential anode material for Mg-ion batteries with extremely high theoretical capacity, Scientific Reports 12, 11460 (2022).
  7. I. A. Wrona, M. Kostrzewa, K. A. Krok, A. P. Durajski, R. Szczesniak,
    Carbonaceous sulfur hydride system: the strong-coupled room-temperature superconductor with a low value of Ginzburg-Landau parameter, Journal of Applied Physics 131, 113901 (2022).
  8. P. Niegodajew, A. P. Durajski, P. Rajca, K. M. Gruszka, M. Marek,
    Experimental and numerical study on the orientation distribution of cylindrical particles in random packed beds, Chemical Engineering Journal 432, 134043 (2022).
2021
  1. A. P. Durajski, R. Szczesniak,
    New superconducting superhydride LaC2 H8 at relatively low stabilization pressure, Physical Chemistry Chemical Physics 23, 25070 (2021).
  2. A. P. Durajski, P. Niegodajew, K. M. Gruszka,
    The influence of heteroatom doping on local properties of phosphorene monolayer, Scientific Reports 11, 18494 (2021).
  3. M. Kostrzewa, A. P. Durajski, J. K. Kalaga, R. Szczesniak,
    Thermodynamic properties of the superconducting state in metallic hydrogen: electronic correlations, non-conventional electron-phonon couplings and the anharmonic effects, Journal of Superconductivity and Novel Magnetism 34, 2281–2291 (2021).
  4. G. T. Kasprzak, K. M. Gruszka, A. P. Durajski,
    Theoretical investigation of C3N monolayer as anode material for Li/Na-ion batteries, Acta Physica Polonica A 139, 621–624 (2021).
  5. I. A. Domagalska, M. W. Jarosik, A. P. Durajski, J. K. Kalaga, R. Szczesniak,
    Chaotic evolution of the energy of the electron orbital and the hopping integral in diatomic molecule cations subjected to harmonic excitation, Physica D 423, 132929 (2021).
  6. A. P. Durajski, C. Wang, Y. Li, R. Szczesniak, J. H. Cho,
    Evidence of phonon-mediated superconductivity in LaH10 at high pressure, Annalen der Physik 533, 2000518 (2021).
  7. K. M. Gruszka, A. P. Durajski,
    Substitution induced and stress controlled magnetism in 2D pyrene-based carbon nanomaterial, Surface Science 709, 121836 (2021).
  8. A. P. Durajski, K. M. Skoczylas, R. Szczesniak,
    Stability and superconductivity of Ca-intercalated bilayer blue phosphorene, Physical Chemistry Chemical Physics 23, 2846-2852 (2021).
  9. K. A. Szewczyk, M. W. Jarosik, A. P. Durajski, R. Szczesniak,
    The unbalanced phonon-induced superconducting state on a square lattice beyond the static boundary, Physica B 600, 412613 (2021).
2020
  1. A. P. Durajski, M. W. Jarosik, K. P. Kosk-Joniec, I. A. Wrona, M. Kostrzewa, K. A. Szewczyk, R. Szczesniak,
    Phonon-induced superconducting state: from metallic hydrogen to LaH10, Acta Physica Polonica A 138, 715-727 (2020).
  2. K. Gruszka, A. P. Durajski, P. Niegodajew, A. Wawrzyniak, R. Gnatowska, M. Beben, M. Sofer,
    Studies of acoustic wave propagation when facing obstacle, Acta Physica Polonica A 138, 280-282 (2020).
  3. A. P. Durajski, K. M. Gruszka, K. Giza, P. Niegodajew,
    The energy storage properties of supercapacitors with carbon-based electrodes, Acta Physica Polonica A 138, 148-151 (2020).
  4. A. P. Durajski, A. E. Auguscik,
    Electronic properties of graphene/hBN heterostructures with in-plane displacement, Acta Physica Polonica A, 138, 136-139 (2020).
  5. K. Szewczyk, I. Domagalska, A. P. Durajski, R. Szczesniak,
    Nonadiabatic superconductivity in Li-intercalated hexagonal boron nitride bilayer, Beilstein Journal of Nanotechnology 11, 1178-1189 (2020).
  6. A. P. Durajski, K. M. Gruszka, P. Niegodajew,
    First-principles study of substitutionally doped phosphorene as anode material for Na-ion batteries, Applied Surface Science, 532, 147377 (2020).
  7. K. M. Skoczylas, A. P. Durajski, R. Szczesniak,
    Thermodynamic properties of superconducting state in intercalated bilayer graphene, Acta Physica Polonica A, 137, 776-778 (2020).
  8. A. E. Auguscik, A. P. Durajski, R. Szczesniak,
    First-principles study on electronic and magnetic properties of Sc-, Ti- and Zn-doped graphene, Acta Physica Polonica A, 137, 958-960 (2020).
  9. A. P. Durajski, R. Szczesniak, Y. Li, C. Wang, J. H. Cho,
    Isotope effect in superconducting lanthanum hydride under high compression, Physical Review B 101, 214501 (2020).
  10. X. Zhou, B. Brzostowski, A. Durajski, M. Liu, J. Xiang, T. Jiang, Z. Wang, S. Chen, P. Li, Z. Zhong, A. Drzewinski, M. Jarosik, R. Szczesniak, T. Lai, D. Guo, D. Zhong,
    Atomically Thin 1T-FeCl2 Grown by Molecular-Beam Epitaxy, The Journal of Physical Chemistry C, 124, 9416-9423 (2020).
  11. K. M. Skoczylas, A. P. Durajski, R. Szczesniak,
    Pressure effects on the superconductivity in FeH5 compound, Physica B, 584, 412063 (2020).
  12. A. P. Durajski, A. E. Auguscik, R. Szczesniak,
    Tunable electronic and magnetic properties of substitutionally doped graphene, Physica E 119, 113985 (2020).
  13. M. Kostrzewa, K. M. Szczesniak, A. P. Durajski, R. Szczesniak,
    From LaH10 to room–temperature superconductors, Scientific Reports 19, 1592 (2020).
2019
  1. K. Gruszka, A. P. Durajski, P. Niegodajew, M. Beben, W. Elsner, R. Gnatowska, M. Sofer,
    Problems with identification of vortex rings when using anemometry measurements, Journal of Physics: Conference Series 1398, 012005 (2019).
  2. A.P. Durajski, K.M. Skoczylas, R. Szczesniak,
    Adatom-dependent superconducting transition temperature in monolayer graphene, Superconductor Science and Technology 32, 125005 (2019).
  3. J. Chen, W. Cui, J. Shi, M. Xu, J. Hao, A.P. Durajski, Y. Li,
    Computational design of novel hydrogen-rich YS-H compounds, ACS Omega 4, 14317-14323 (2019).
  4. K.M. Skoczylas, R. Szczesniak, A.P. Durajski,
    Thermodynamic properties of superconducting GeH3 under high pressure, Journal of Physics and Chemistry of Solids 132, 110–115 (2019) .
  5. A.P. Durajski, K.M. Skoczylas, A.E. Auguscik,
    Non-adiabatic effects in superconducting intermetallic borocarbides, Acta Physica Polonica A 135, 276–279 (2019) .
  6. K.M. Skoczylas, A.E. Auguscik, A.P. Durajski,
    London penetration depth study of Nb2InC nanolaminate, Acta Physica Polonica A 135, 196–199 (2019) .
  7. A.P. Durajski, K.M. Skoczylas, R. Szczesniak,
    Superconductivity in bilayer graphene intercalated by alkali and alkaline earth metals, Physical Chemistry Chemical Physics 21, 5925–5931 (2019) .
  8. A.P. Durajski, A.B. Olesik, A.E. Auguscik,
    Spontaneous magnetization of ferromagnet in mean-field Heisenberg model, Modern Physics Letters B 33, 1950036 (2019) .
  9. E. A. Drzazga, R. Szczesniak, M. Kostrzewa, A.P. Durajski, I.A. Domagalska,
    Non-parametric application of Tsallis statistics to systems consisting of M hydrogen molecules, Physica A 518, 1-12 (2019).
2018
  1. B. Liu, W. Cui, J. Shi, L. Zhu, J. Chen, S. Lin, R. Su, J. Ma, K. Yang, M. Xu, J. Hao, A.P. Durajski, J. Qi, Y. Li, Y. Li,
    Effect of covalent bonding on the superconducting critical temperature of the H-S-Se system, Physical Review B 98, 174101 (2018).
  2. K.M. Skoczylas, R. Szczesniak, A.P. Durajski,
    Strain effect on thermodynamic properties of superconducting Nb2InC, Physica C 555, 39–44 (2018).
  3. A.P. Durajski, R. Szczesniak,
    Gradual reduction of the superconducting transition temperature of H3S by partial replacing sulfur with phosphorus, Physica C 554, 38–43 (2018).
  4. A.P. Durajski, R. Szczesniak,
    Structural, electronic, vibrational, and superconducting properties of hydrogenated chlorine, The Journal of Chemical Physics 149, 074101 (2018).
  5. P. Tarasewicz, R. Szczesniak, A.P. Durajski,
    The half-filled superconducting system with on-site inter-band interactions, Physica C 552, 1–18 (2018).
  6. R. Szczesniak, A.P. Durajski, M.W. Jarosik,
    Ab-initio study of superconducting state in intercalated MoSe2 and WSe2 bilayers, Physica B 536, 773–776 (2018).
  7. R. Szczesniak, M.W. Jarosik, P. Tarasewicz, A.P. Durajski,
    Multi-band description of the specific heat and thermodynamic critical field in MgB2 superconductor, Physica B 536, 726–729 (2018).
  8. R. Szczesniak, A.P. Durajski,
    Unusual sulfur isotope effect and extremely high critical temperature in H3S superconductor, Scientific Reports 8, 6037 (2018).
  9. M.W. Jarosik, R. Szczesniak, A.P. Durajski, J.K. Kalaga, W. Leoński,
    Influence of external extrusion on stability of hydrogen molecule and its chaotic behavior, Chaos 28, 013126 (2018).
  10. R. Szczesniak, A.P. Durajski, A.M. Duda, P. Tarasewicz,
    Diagram of the critical temperature - Nernst temperature for the superconductivity induced by modified electron-phonon interaction, Journal of Superconductivity and Novel Magnetism 31, 19–28 (2018).
  11. R. Szczesniak, A.P. Durajski, M.W. Jarosik,
    Strong-coupling superconductivity induced by calcium intercalation in bilayer transition-metal dichalcogenides, Frontiers of Physics 13, 137401 (2018).
2017
  1. A.P. Durajski, R. Szczesniak,
    Doping dependence of critical temperature for superconductivity induced by hole-phonon interaction, Physics Letters A 381, 3332-3336 (2017).
  2. R. Szczesniak, A.P. Durajski, M.W. Jarosik,
    Metallization and superconductivity in Ca-intercalated bilayer MoS2, Journal of Physics and Chemistry of Solids 111, 254–257 (2017).
  3. A.P. Durajski, R. Szczesniak,
    First-principles study of superconducting hydrogen sulfide at pressure up to 500 GPa, Scientific Reports 7, 4473 (2017).
  4. A.P. Durajski, R. Szczesniak,
    On the magnetic penetration depth in superconducting ultrathin lead films, Acta Physica Polonica A 131, 1051-1053 (2017).
  5. R. Szczesniak, A.P. Durajski, A.M. Duda,
    Pseudogap in the Eliashberg approach based on electron-phonon and electron-electron-phonon interaction, Annalen der Physik 529, 1600254 (2017).
  6. R. Szczesniak, A.P. Durajski,
    The isotope effect in H3S superconductor, Solid State Communications 249, 30-33 (2017).
2016
  1. A.P. Durajski,
    Quantitative analysis of nonadiabatic effects in dense H3S and PH3 superconductors, Scientific Reports 6, 38570 (2016).
  2. B. Wiendlocha, R. Szczesniak, A.P. Durajski, M. Muras,
    Pressure effects on the unconventional superconductivity of noncentrosymmetric LaNiC2, Physical Review B 94, 134517 (2016).
  3. A.P. Durajski, M.K. Paliwoda, R. Szczesniak,
    Superconductivity in the intermetallic borocarbides YPd2B2C, YPt2B2C and LaPt2B2C, Solid State Sciences 61, 215-219 (2016).
  4. D. Szczesniak, A.P. Durajski, A. Khater, D. Ghader,
    Energy band gaps in graphene nanoribbons with corners, Europhysics Letters 114, 48001 (2016).
  5. R. Szczesniak, A.P. Durajski,
    Non-BCS temperature dependence of energy gap in thin film electron-doped cuprates, Journal of Superconductivity and Novel Magnetism 29, 1779-1786 (2016).
  6. A.P. Durajski,
    Anisotropic evolution of energy gap in superconducting Bi2212, Frontiers of Physics 11, 117408 (2016).
  7. R. Szczesniak, A.P. Durajski,
    Superconductivity well above room temperature in compressed MgH6, Frontiers of Physics 11, 117406 (2016).
  8. R. Szczesniak, A.P. Durajski, K.M. Skoczylas, L. Herok,
    Low-temperature thermodynamic properties of superconducting antiperovskite CdCNi3, Journal of Low Temperature Physics 183, 387-398 (2016).
  9. A.P. Durajski, R. Szczesniak, L. Pietronero,
    High-temperature study of superconducting hydrogen and deuterium sulfide, Annalen der Physik 528, 358-364 (2016).
  10. R. Szczesniak, A.P. Durajski, D. Szczesniak,
    Thermodynamic parameters of Zr superconductor at ω—β structural phase transition, Physica Status Solidi B 253, 538-544 (2016).
2015
  1. R. Szczesniak, A.P. Durajski,
    Detailed study of the superconducting properties in compressed germane, European Physical Journal B 88, 342 (2015).
  2. A.P. Durajski,
    A comparison of two high-pressure superconducting phases in yttrium, Physica Status Solidi B 252, 2167-2173 (2015).
  3. A.P. Durajski,
    Effect of layer thickness on the superconducting properties in ultrathin Pb films, Superconductor Science and Technology 28, 095011 (2015).
  4. R. Szczesniak, A.P. Durajski, K.M. Skoczylas,
    Comparison study of superconductivity in zirconium and hafnium based electron-doped layered chloronitrides, Physica B 475, 66-72 (2015).
  5. A.P. Durajski, R. Szczesniak, Y. Li,
    Non-BCS thermodynamic properties of H2S superconductor, Physica C 515, 1-6 (2015).
  6. P.W. Pach, R. Szczesniak, A.P. Durajski, Pressure dependence of the thermodynamic critical field in francium, Acta Physica Polonica A 127, 231 (2015).
  7. A.P. Durajski, R. Szczesniak,
    Characterization of phonon-mediated superconductivity in lithium doping borocarbide, Solid State Sciences 42, 20 (2015).
  8. A.P. Durajski,
    Influence of hole doping on the superconducting state in graphane, Superconductor Science and Technology 28, 035002 (2015).
  9. R. Szczesniak, A.P. Durajski,
    Description of high-temperature superconducting state in BSLCO compound, Journal of Superconductivity and Novel Magnetism 28, 19-24 (2015).
  10. R. Szczesniak, A.P. Durajski, L. Herok,
    Thermodynamic properties of antiperovskite MgCNi3 in superconducting phase, Solid State Communications 203, 63 (2015).
2014
  1. R. Szczesniak, A.P. Durajski, L. Herok,
    Theoretical description of the SrPt3P superconductor in the strong coupling limit, Physica Scripta 89, 125701 (2014).
  2. R. Szczęśniak, A.P. Durajski,
    Anisotropy of the gap parameter in the hole-doped cuprates, Superconductor Science and Technology 27, 125004 (2014).
  3. A.P. Durajski, R. Szczesniak,
    Properties of pressure-induced superconducting state in trihydrides ScH3 and LaH3, Superconductor Science and Technology 27, 115012 (2014).
  4. R. Szczesniak, A.P. Durajski,
    On the ratio of the energy gap amplitude to the critical temperature for cuprates, Acta Physica Polonica A 126, A-92 (2014).
  5. A.P. Durajski, R. Szczesniak, D. Szczesniak,
    Study of superconducting phase in silicene under biaxial tensile strain, Solid State Communications 200, 17 (2014).
  6. A.P. Durajski,
    Phonon-mediated superconductivity in compressed NbH4 compound, European Physical Journal B 87, 210 (2014).
  7. A.P. Durajski, R. Szczesniak, A.M. Duda,
    High temperature superconducting properties of atomic hydrogen at 802 GPa, Solid State Communications 195, 55 (2014).
  8. A.P. Durajski, R. Szczęśniak,
    Strong-coupling superconductivity in CaLi2 under the pressure of 100 GPa, Solid State Communications 192, 93 (2014).
  9. A.P. Durajski, R. Szczesniak,
    On the thermodynamic critical field for the K3C60 and Rb3C60 fullerides, Acta Physica Polonica A 126, 342 (2014).
  10. D. Szczesniak, A.P. Durajski, R. Szczesniak,
    Influence of lithium doping on the thermodynamic properties of graphene based superconductors, Journal of Physics: Condensed Matter 26, 255701 (2014).
  11. R. Szczesniak, A.P. Durajski,
    The energy gap in the (Hg1-xSnx)Ba2Ca2Cu3O8+y superconductor, Journal of Superconductivity and Novel Magnetism 27, 1363 (2014).
  12. A.P. Durajski, R. Szczesniak,
    Estimation of superconducting parameters for silane at high pressure, Modern Physics Letters B 28, 1450052 (2014).
  13. R. Szczesniak, A.P. Durajski, P.W. Pach,
    On the thermodynamic properties of the Rb3C60 superconductor, Cryogenics 61, 38 (2014).
  14. R. Szczesniak, D. Szczesniak, A.P. Durajski,
    Thermodynamics of the superconducting phase in compressed GeH4(H2)2, Solid State Communications 184, 6 (2014).
  15. M.W. Jarosik, A.P. Durajski,
    Investigation of the superconducting phase in metallic hydrogen near the pressure of metallization, Modern Physics Letters B 28, 1450010 (2014).
  16. R. Szczesniak, A.P. Durajski,
    The superconducting state above the boiling point of liquid nitrogen in the GaH3 compound, Superconductor Science and Technology 27, 015003 (2014).
  17. R. Szczesniak, A.P. Durajski, P.W. Pach,
    Superconductivity in α-polonium at the reduced volume, Journal of Physics and Chemistry of Solids 75, 224 (2014).
2013
  1. R. Szczesniak, A.P. Durajski,
    The thermodynamic properties of the high-pressure superconducting state in the hydrogen-rich compounds, Solid State Sciences 25, 45 (2013).
  2. R. Szczesniak, A.P. Durajski,
    The high-pressure superconductivity in SiH4: the strong-coupling approach, Solid State Communications 172, 5 (2013).
  3. R. Szczesniak, A.P. Durajski, P.W. Pach,
    CaLi2 superconductor under the pressure of 100 GPa: the thermodynamic critical field and the specific heat, Physica Scripta 91, 025704 (2013).
  4. R. Szczesniak, A.P. Durajski, D. Szczesniak,
    Study of the superconducting state in the Cmmm phase of GeH4 compound, Solid State Communications 165, 39 (2013).
  5. R. Szczesniak, A.P. Durajski, P.W. Pach,
    The high pressure superconductivity of CaLi2 compound: the thermodynamic properties, Journal of Low Temperature Physics 171, 769 (2013).
  6. R. Szczesniak, A.P. Durajski,
    The characterization of high-pressure superconducting state in Si2H6 compound: the strong-coupling description, Journal of Physics and Chemistry of Solids 74, 641 (2013).
  7. A.P. Durajski,
    Study of thermodynamic properties of SiH4(H2)2 superconductor under high pressure, Physica C 485, 145 (2013).
  8. R. Szczesniak, A.P. Durajski,
    On the critical temperature and the energy gap in dense SiH4(H2)2 at 250 GPa, Solid State Communications 153, 26 (2013).
2012
  1. A.P. Durajski, R. Szczesniak, M.W. Jarosik,
    Properties of the superconducting state in compressed Sulphur, Phase Transitions 85, 727 (2012).
  2. R. Szczesniak, A.P. Durajski,
    The superconducting phase of Calcium under pressure at 200 GPa: strong-coupling description, Solid State Communications 152, 1018 (2012).
  3. R. Szczesniak, A.P. Durajski, M.W. Jarosik,
    Specific heat and thermodynamic critical field for Calcium under the pressure at 120 GPa, Modern Physics Letters B 26, 1250050 (2012).
  4. R. Szczesniak, A.P. Durajski,
    Thermodynamics of the superconducting state in Calcium at 200 GPa, Journal of Superconductivity and Novel Magnetism 25, 399 (2012).
  5. R. Szczesniak, A.P. Durajski,
    Superconductivity of calcium in phase VI, Physica C 472, 15 (2012).