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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
N. A. Fominykh, V. V. Stegailov, “Polarons and charge transfer in FeCr$_2$O$_4$ chromite treated by the $\mathrm{DFT} + U$ method”, Pis'ma v Zh. Èksper. Teoret. Fiz., 117:11 (2023), 857–862 ; JETP Letters, 117:11 (2023), 849–853 |
4
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2021 |
2. |
I. D. Fedorov, V. V. Stegailov, “Dissociation of exciton states in warm dense hydrogen”, Pis'ma v Zh. Èksper. Teoret. Fiz., 113:6 (2021), 392–398 ; JETP Letters, 113:6 (2021), 396–401 |
4
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2016 |
3. |
Grigory S. Smirnov, Vladimir V. Stegailov, “Efficiency of classical molecular dynamics algorithms on supercomputing hardware”, Matem. Mod., 28:5 (2016), 95–108 ; Math. Models Comput. Simul., 8:6 (2016), 734–743 |
14
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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 |
2
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5. |
G. S. Smirnov, V. V. Stegailov, “Anomalous diffusion of guest molecules in hydrogen gas hydrates”, TVT, 53:6 (2015), 872–880 ; High Temperature, 53:6 (2015), 829–836 |
11
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6. |
V. P. Nikol'skii, V. V. Stegailov, “Efficiency of ARM processors for classical molecular dynamics”, Num. Meth. Prog., 16:4 (2015), 578–585 |
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2014 |
7. |
A. Yu. Kuksin, A. V. Lankin, I. V. Morozov, H. E. Norman, N. D. Orekhov, V. V. Pisarev, G. S. Smirnov, S. V. Starikov, V. V. Stegailov, A. V. Timofeev, “Predictive modeling and simulation of properties and multi-scale processes in materials science. Tasks for Exaflops-era supercomputers”, Program Systems: Theory and Applications, 5:1 (2014), 191–244 |
2
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8. |
V. V. Stegailov, G. E. Norman, “Challenges to the supercomputer development in Russia: a HPC user perspective”, Program Systems: Theory and Applications, 5:1 (2014), 111–152 |
5
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9. |
N. D. Orekhov, V. V. Stegailov, “Molecular Dynamics Simulation of Graphite Melting”, TVT, 52:2 (2014), 220–228 ; High Temperature, 52:2 (2014), 198–204 |
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2012 |
10. |
Genri E. Norman, Vladimir V. Stegailov, “Stochastic theory of the classical molecular dynamics method”, Matem. Mod., 24:6 (2012), 3–44 ; Math. Models Comput. Simul., 5:4 (2013), 305–333 |
145
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11. |
P. A. Zhilyaev, V. V. Stegailov, “Ab initio molecular dynamics: application perspectives of multi-CPU and hybrid supercomputers”, Num. Meth. Prog., 13:1 (2012), 37–45 |
3
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2011 |
12. |
S. V. Starikov, V. V. Stegailov, H. E. Norman, V. E. Fortov, M. Ishino, M. Tanaka, N. Hasegawa, M. Nishikino, T. Ohba, T. Kaihori, E. Ochi, T. Imazono, T. Kavachi, C. Tamotsu, T. A. Pikuz, I. Yu. Skobelev, A. Ya. Faenov, “Laser ablation of gold: Experiment and atomistic simulation”, Pis'ma v Zh. Èksper. Teoret. Fiz., 93:11 (2011), 719–725 ; JETP Letters, 93:11 (2011), 642–647 |
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2010 |
13. |
A. V. Lankin, H. E. Norman, V. V. Stegailov, “Atomistic simulation of the interaction of an electrolyte with graphite nanostructures in perspective supercapacitors”, TVT, 48:6 (2010), 877–885 ; High Temperature, 48:6 (2010), 837–845 |
14
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14. |
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 ; High Temperature, 48:4 (2010), 511–517 |
18
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15. |
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 |
4
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2008 |
16. |
S. V. Starikov, V. V. Stegailov, “Premelting of iron at high pressures under conditions of contact with amorphous argon”, TVT, 46:6 (2008), 864–869 ; High Temperature, 46:6 (2008), 795–799 |
4
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2007 |
17. |
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 ; High Temperature, 45:2 (2007), 164–172 |
9
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18. |
A. Yu. Kuksin, H. E. Norman, V. V. Stegailov, “The phase diagram and spinodal decomposition of metastable states of Lennard-Jones system”, TVT, 45:1 (2007), 43–55 ; High Temperature, 45:1 (2007), 37–48 |
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Presentations in Math-Net.Ru |
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Organisations |
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