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Yanilkin, Alexey Vital'evich

Statistics Math-Net.Ru
Total publications: 8
Scientific articles: 8

Number of views:
This page:343
Abstract pages:2228
Full texts:1027
References:173
Candidate of physico-mathematical sciences
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https://www.mathnet.ru/eng/person97981
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Publications in Math-Net.Ru Citations
2020
1. E. A. Meshkov, I. I. Novoselov, A. V. Yanilkin, S. V. Rogozhkin, A. A. Nikitin, A. A. Khomich, A. S. Shutov, B. A. Tarasov, S. E. Danilov, V. L. Arbuzov, “Experimental and theoretical study of the atomic structure evolution of high-entropy alloys based on Fe, Cr, Ni, Mn, and Co upon thermal and radiation aging”, Fizika Tverdogo Tela, 62:3 (2020),  339–350  mathnet  elib; Phys. Solid State, 62:3 (2020), 389–400 6
2017
2. K. P. Migdal, P. A. Pokatashkin, A. V. Yanilkin, “Investigation of melting at the uranium $\gamma$ phase by quantum and classical molecular dynamics methods”, TVT, 55:5 (2017),  725–731  mathnet  elib; High Temperature, 55:5 (2017), 711–717  isi  scopus 5
3. A. V. Yanilkin, “Investigation of $\alpha$-phase and liquid uranium by the method of quantum molecular dynamics”, TVT, 55:1 (2017),  44–50  mathnet  elib; High Temperature, 55:1 (2017), 40–46  isi  scopus 7
2015
4. G. E. Norman, N. D. Orekhov, V. V. Pisarev, G. S. Smirnov, S. V. Starikov, V. V. Stegailov, A. V. Yanilkin, “What for and which exaflops supercomputers are necessary in natural sciences”, Program Systems: Theory and Applications, 6:4 (2015),  243–311  mathnet 2
2014
5. O. V. Sergeev, A. V. Yanilkin, “Molecular dynamics simulation of combustion front propagation in a PETN single crystal”, Fizika Goreniya i Vzryva, 50:3 (2014),  87–97  mathnet  elib; Combustion, Explosion and Shock Waves, 50:3 (2014), 323–332 8
2010
6. A. Yu. Kuksin, H. E. Norman, V. V. Pisarev, V. V. Stegailov, A. V. Yanilkin, “A kinetic model of fracture of simple liquids”, TVT, 48:4 (2010),  536–543  mathnet; High Temperature, 48:4 (2010), 511–517  isi  scopus 18
7. A. V. Yanilkin, P. A. Zhilyaev, A. Yu. Kuksin, H. E. Norman, V. V. Pisarev, V. V. Stegailov, “Application of supercomputers for the molecular dynamics simulation of processes in condensed matter”, Num. Meth. Prog., 11:1 (2010),  111–116  mathnet 4
2007
8. H. E. Norman, V. V. Stegailov, A. V. Yanilkin, “The modeling of high-rate tension of crystalline iron by the method of molecular dynamics”, TVT, 45:2 (2007),  193–202  mathnet  elib; High Temperature, 45:2 (2007), 164–172  isi  elib  scopus 9

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