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Konchakov, Roman Anatol'evich

Candidate of physico-mathematical sciences (2003)
Speciality: 01.04.07 (Physics of condensed states)
E-mail:

https://www.mathnet.ru/eng/person121117
List of publications on Google Scholar
https://elibrary.ru/author_items.asp?authorid=350149
https://orcid.org/0000-0002-6878-4441

Publications in Math-Net.Ru Citations
2024
1. A. S. Makarov, R. A. Konchakov, G. V. Afonin, J. C. Qiao, N. P. Kobelev, V. A. Khonik, “Excess entropy of metallic glasses and its relation to the glass-forming ability of maternal melts”, Pis'ma v Zh. Èksper. Teoret. Fiz., 120:10 (2024),  794–801  mathnet; JETP Letters, 120:10 (2024), 759–765 2
2. R. A. Konchakov, A. S. Makarov, G. V. Afonin, J. C. Qiao, N. P. Kobelev, V. A. Khonik, “Relation of the fragility of metallic glasses with the mixing entropy and excess entropy with respect to the maternal crystal”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:6 (2024),  446–451  mathnet; JETP Letters, 119:6 (2024), 458–463 2
2022
3. R. A. Konchakov, A. S. Makarov, A. S. Aronin, N. P. Kobelev, V. A. Khonik, “Elastic dipoles in crystal and glassy aluminum and high-entropy Fe$_{20}$Ni$_{20}$Cr$_{20}$Co$_{20}$Cu$_{20}$ alloy”, Pis'ma v Zh. Èksper. Teoret. Fiz., 115:5 (2022),  308–314  mathnet; JETP Letters, 115:5 (2022), 280–285 4
2021
4. R. A. Konchakov, A. S. Makarov, A. S. Aronin, N. P. Kobelev, V. A. Khonik, “On the mechanism of melting in simple metals”, Pis'ma v Zh. Èksper. Teoret. Fiz., 113:5 (2021),  341–347  mathnet  elib; JETP Letters, 113:5 (2021), 345–351  isi  scopus 9
2020
5. M. A. Kretova, R. A. Konchakov, N. P. Kobelev, V. A. Khonik, “Point defects and their properties in the Fe$_{20}$Ni$_{20}$Cr$_{20}$Co$_{20}$Cu$_{20}$ high-entropy alloy”, Pis'ma v Zh. Èksper. Teoret. Fiz., 111:12 (2020),  806–812  mathnet  elib; JETP Letters, 111:12 (2020), 679–684  isi  scopus 15
2019
6. R. A. Konchakov, A. S. Makarov, G. V. Afonin, M. A. Kretova, N. P. Kobelev, V. A. Khonik, “Relation between the shear and dilatational elastic energies of interstitial defects in metallic crystals”, Pis'ma v Zh. Èksper. Teoret. Fiz., 109:7 (2019),  473–478  mathnet  elib; JETP Letters, 109:7 (2019), 460–464  isi  scopus 8
2017
7. E. V. Goncharova, A. S. Makarov, R. A. Konchakov, N. P. Kobelev, V. A. Khonik, “Premelting generation of interstitial defects in polycrystalline indium”, Pis'ma v Zh. Èksper. Teoret. Fiz., 106:1 (2017),  39–44  mathnet  elib; JETP Letters, 106:1 (2017), 35–39  isi  scopus 28
2016
8. R. A. Konchakov, N. P. Kobelev, V. A. Khonik, A. S. Makarov, “Elastic dipoles in the model of single-crystal and amorphous copper”, Fizika Tverdogo Tela, 58:2 (2016),  209–216  mathnet  elib; Phys. Solid State, 58:2 (2016), 215–222 10
9. E. V. Safonova, R. A. Konchakov, Yu. P. Mitrofanov, N. P. Kobelev, A. Yu. Vinogradov, V. A. Khonik, “Contribution of interstitial defects and anharmonicity to the premelting increase in the heat capacity of single-crystal aluminum”, Pis'ma v Zh. Èksper. Teoret. Fiz., 103:12 (2016),  861–865  mathnet  elib; JETP Letters, 103:12 (2016), 765–768  isi  scopus 18
2015
10. R. A. Konchakov, V. A. Khonik, N. P. Kobelev, “Split interstitials in computer models of single-crystal and amorphous copper”, Fizika Tverdogo Tela, 57:5 (2015),  844–852  mathnet  elib; Phys. Solid State, 57:5 (2015), 856–865 12
2014
11. R. A. Konchakov, V. A. Khonik, “Effect of vacancies and interstitials in the dumbbell configuration on the shear modulus and vibrational density of states of copper”, Fizika Tverdogo Tela, 56:7 (2014),  1316–1321  mathnet  elib; Phys. Solid State, 56:7 (2014), 1368–1373 11

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