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1. C. A. Marques, M. J. Neat, C. M. Yim, M. D. Watson, L. C. Rhodes, C. Heil, K. S. Pervakov, V. A. Vlasenko, V. M. Pudalov, A. V. Muratov, T. K. Kim, and P. Wahl, Electronic structure and superconductivity of the non-centrosymmetric Sn4As3. New J. Phys. 22, 06304 (2020). https://iopscience.iop.org/article/10.1088/1367−2630/ab890a.
2. V. S. Stolyarov, K. Pervakov, A. S. Astrakhanceva, I. A. Golovchanskiy, D. V. Vyalikh, T. K. Kim, S. V. Eremeev, V. A. Vlasenko, V. M. Pudalov, A. A. Golubov, E. V. Chulkov, and D. Roditchev, Electronic Structures and Surface Reconstructions in Magnetic Superconductor RbEuFe4As4, The Journal of Physical Chemistry Letters, 11, 9393−9399 (2020). https://dx.doi.org/10.1021/acs.jpclett.0c02711.
3. D. V. Semenok, A. G. Kvashnin, A. G. Ivanova, V. Svitlyk, V. Yu. Fominski, A.V. Sadakov, O. A. Sobolevskiy, V. M. Pudalov, I. A. Troyan, A. R. Oganov, Superconductivity at 161 K in thorium hydride ThH10: Synthesis and properties, Materials Today, 33 (March), 36−44 (2020).
4. P. I. Bezotosnyi, K. A. Dmitrieva, A. V. Sadakov, K. S. Pervakov, A. V. Muratov, A. S. Usoltsev, A. Yu. Tsvetkov, S. Yu. Gavrilkin, N. S. Pavlov, A. A. Slobodchikov, O. Yu. Vilkov, A. G. Rybkin, I. A. Nekrasov, and V. M. Pudalov, Electronic band structure and superconducting properties of SnAs, Phys. Rev B, 100, 184514 (2019). IF=3.720. https://journals.aps.org/prb/abstract/10.1103/PhysRevB.100.184514.
5. V. Suslov, A. B. Davydov, L. N. Oveshnikov, L. A. Morgun, K. I. Kugel, V. S. Zakhvalinskii, E. A. Pilyuk, A. V. Kochura, A. P. Kuzmenko, V. M. Pudalov, and B. A. Aronzon, Observation of subkelvin superconductivity in Cd3As2 thin films, Phys. Rev. B 99, 094512 (2019). DOI: 10.1103/PhysRevB.99.094512.
6. M. Abdel-Hafiez, Y. Zhao, Z. Huang, C.-w. Cho, C. H. Wong, A. Hassen, M. Ohkuma, Y.-W. Fang, B.-J. Pan, Z.-A. Ren, A. Sadakov, A. Usoltsev, V. Pudalov, M. Mito, R. Lortz, C. Krellner, and W. Yang, High-pressure effects on isotropic superconductivity in the iron-free layered pnictide superconductor BaPd2As2, Phys. Rev. B 97, 134508 (2018). DOI: 10.1103/PhysRevB.97.134508.
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8. A. V. Muratov, A. V. Sadakov, S. Yu. Gavrilkin, A. R. Prishchepa, G. S. Epifanova, D. A. Chareev, V. M. Pudalov, Specific heat of FeSe: Two gaps with different anisotropy in superconducting state, Physica B: Condensed Matter, 536, 785−789 (2018).
9. T. E. Kuzmicheva, S. A. Kuzmichev, A. V. Sadakov, S. Yu. Gavrilkin, A. Yu. Tsvetkov, X. Lu, H. Luo, A. N. Vasiliev, V. M. Pudalov, Xiao-Jia Chen, Mahmoud Abdel-Hafiez, Superconducting gap symmetry in BaFe1.9Ni0.1As2 superconductor, Physical Review B 97, 235106 (2018). https://doi.org/10.1103/PhysRevB.97.235106.
10. T. E. Kuzmicheva, S. A. Kuzmichev, K. S. Pervakov, V. M. Pudalov, and N. D. Zhigadlo, Evolution of superconducting gaps in Th-substituted Sm1−xThxOFeAs studied, by multiple Andreev reflection spectroscopy, Phys.Rev. B, 95, 094507 (2017); DOI: 10.1103/PhysRevB.95.094507.
11. T. E. Kuzmicheva, A. V. Muratov, S. A. Kuzmichev, A. V. Sadakov, Yu. A. Aleshchenko, V. A. Vlasenko, V. P. Martovitsky, K. S. Pervakov, Yu. F. Eltsev, V. M. Pudalov, On the structure of the superconducting order parameter in high-temperature Fe-based superconductors, Physics Uspekhi 60 (4) 419 — 429 (2017). DOI: https://doi.org/10.3367/UFNe.2016.10.038002.
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13. S. A. Kuzmichev, T. E. Kuzmicheva, S. N. Tchesnokov, V. M. Pudalov, A. N. Vasiliev, Estimation of Intraband and Interband Relative Coupling Constants from Temperature Dependences of the Order Parameter for Two-Gap Superconductors. Journal of Superconductivity and Novel Magnetism, 29 (4), 1111−1116 (2016). DOI: 10.1007/s10948−016−3386−5.
14. T. E. Kuzmicheva, V. A. Vlasenko, S. Yu. Gavrilkin, S. A. Kuzmichev, K. S. Pervakov, I.V. Roshchina, V. M. Pudalov, Vortex Structure and Anisotropic Superconducting Gaps in Ba[Fe (Ni)]2As2, Journal of Superconductivity and Novel Magnetism, 29:3059−3064 (2016). DOI 10.1007/s10948−016−3816−4.
15. T. E. Kuzmicheva; S. A. Kuzmichev; A. V. Sadakov; A. V. Muratov; A. S. Usoltsev; Martovitsky V.P.; Shipilov A.R.; Chareev D.A.; Mitrofanova E.S.; Pudalov V.M., Direct Evidence of Two Superconducting Gaps in FeSe_{0.5}Te_{0.5}: SnS-Andreev Spectroscopy and Lower Critical Field, JETP Lett. 104 (12), 852 (2016).