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Publications in Math-Net.Ru |
Citations |
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2017 |
1. |
I. A. Silantyeva, A. A. Yurchenko, P. N. Vorontsov-Velyaminov, A. P. Lyubartsev, “Equilibrium properties of 3-arm star-shaped polyions: an entropic sampling Monte Carlo study”, Nanosystems: Physics, Chemistry, Mathematics, 8:1 (2017), 108–120 |
2. |
N. I. Bochkareva, V. V. Voronenkov, R. I. Gorbunov, M. V. Virko, V. S. Kogotkov, A. A. Leonidov, P. N. Vorontsov-Velyaminov, I. A. Sheremet, Yu. G. Shreter, “Hopping conductivity and dielectric relaxation in Schottky barriers on GaN”, Fizika i Tekhnika Poluprovodnikov, 51:9 (2017), 1235–1242 ; Semiconductors, 51:9 (2017), 1186–1193 |
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2015 |
3. |
I. A. Silantyeva, P. N. Vorontsov-Velyaminov, “Entropic sampling of star-shaped polymers with different number of arms: temperature dependencies of structural properties”, Nanosystems: Physics, Chemistry, Mathematics, 6:4 (2015), 513–523 |
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4. |
E. A. Polyakov, P. N. Vorontsov-Velyaminov, “Exact classical stochastic representations of the many-body quantum dynamics”, Nanosystems: Physics, Chemistry, Mathematics, 6:4 (2015), 501–512 |
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2013 |
5. |
A. Siretskiy, C. Elvingson, P. N. Vorontsov-Velyaminov, “Stepwise conformation transitions for a semi-stiff ring polymer confined in a conical trap induced by the increasing external field or by cone's opening angle variation”, Nanosystems: Physics, Chemistry, Mathematics, 4:2 (2013), 225–235 |
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2011 |
6. |
I. A. Silantyeva, P. N. Vorontsov-Velyaminov, “Calculation of the density of states and the thermal properties of polymer
chains and stars on a lattice by the Monte Carlo method with the use of
the Wang–Landau algorithm”, Num. Meth. Prog., 12:4 (2011), 397–408 |
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2009 |
7. |
E. A. Polyakov, P. N. Vorontsov-Velyaminov, A. P. Lyubartsev, “Stochastic positive P-representation in problems of quantum statistics.
Simulation of one-dimensional Bose-gas with delta-repulsion”, Num. Meth. Prog., 10:2 (2009), 223–247 |
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2008 |
8. |
M. A. Voznesenskiy, P. N. Vorontsov-Velyaminov, A. P. Lyubartsev, “Calculations of equilibrium properties of quantum systems using the expanded ensemble MC technique”, Num. Meth. Prog., 9:2 (2008), 170–183 |
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2007 |
9. |
E. A. Polyakov, P. N. Vorontsov-Velyaminov, “A quantum gas in an external field at finite temperatures. An exact expression for density and exited states”, Num. Meth. Prog., 8:4 (2007), 334–351 |
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2006 |
10. |
A. A. Yurchenko, P. N. Vorontsov-Velyaminov, “Entropic sampling of freely-rotating polymer chains”, Num. Meth. Prog., 7:4 (2006), 310–322 |
11. |
N. A. Volkov, A. P. Lyubartsev, P. N. Vorontsov-Velyaminov, “Entropic sampling of the flexible polyelectrolyte with the Wang-Landau algorithm”, Num. Meth. Prog., 7:4 (2006), 300–309 |
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1988 |
12. |
S. V. Shevkunov, A. A. Martsinovskii, P. N. Vorontsov-Velyaminov, “Calculating the critical size and properties of a microdrop by the Monte-Carlo method in a generalized ensemble”, TVT, 26:2 (1988), 246–254 ; High Temperature, 26:2 (1988), 176–183 |
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1986 |
13. |
S. V. Shevkunov, P. N. Vorontsov-Velyaminov, N. B. Gromova, “Расчет равновесных свойств неидеальной ионной плазмы методами теории физических групп. Границы областей с различной структурой в газовой фазе”, TVT, 24:5 (1986), 998–999 |
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1983 |
14. |
S. V. Shevkunov, P. N. Vorontsov-Velyaminov, “Calculation of the equilibrium properties of a nonideal ionic plasma by the methods of the theory of physical
clusters. I. Equilibrium concentration of clusters”, TVT, 21:4 (1983), 625–634 ; High Temperature, 21:4 (1983), 465–473 |
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1982 |
15. |
S. V. Shevkunov, P. N. Vorontsov-Velyaminov, “Thermodynamic properties of ion clusters and their effect on the mechanism of homogeneous nucleation in an ion plasma – calculation by the Monte-Carlo method in an $NpT$ ensemble”, TVT, 20:6 (1982), 1025–1031 ; High Temperature, 20:6 (1982), 803–809 |
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1977 |
16. |
V. A. Pavlov, P. N. Vorontsov-Velyaminov, “Microdrop – gas phase equilibrium in a small system. Molecular-dynamic investigation”, TVT, 15:6 (1977), 1165–1172 ; High Temperature, 15:6 (1977), 998–1004 |
17. |
P. N. Vorontsov-Velyaminov, V. K. Shiff, “Monte Carlo calculation of ionic system with mild repulsion”, TVT, 15:6 (1977), 1137–1142 ; High Temperature, 15:6 (1977), 973–977 |
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1976 |
18. |
V. P. Chasovskikh, P. N. Vorontsov-Velyaminov, “Boundary of ion-pair region for a model ion system – Data of a mathematical experiment”, TVT, 14:2 (1976), 379–382 ; High Temperature, 14:2 (1976), 338–341 |
19. |
V. P. Chasovskikh, P. N. Vorontsov-Velyaminov, “Internal energy of an ion system – Debye temperature function in a broad range of temperatures and volumes – Computational data by Monte-Carlo method”, TVT, 14:1 (1976), 199–201 ; High Temperature, 14:1 (1976), 174–176 |
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1975 |
20. |
P. N. Vorontsov-Velyaminov, V. P. Chasovskikh, “Critical point in an ionic system from the results of a mathematical experiment. Comparison with salt melts”, TVT, 13:6 (1975), 1153–1159 ; High Temperature, 13:6 (1975), 1071–1076 |
21. |
P. N. Vorontsov-Velyaminov, V. A. Pavlov, “Переходы "газ – капля" и "капля – кристалл" в малой системе. Расчет методом молекулярной динамики”, TVT, 13:2 (1975), 302–308 |
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1970 |
22. |
P. N. Vorontsov-Velyaminov, A. M. Eliashevich, L. A. Morgenshtern, V. P. Chasovskikh, “Investigation of phase transitions in argon and Coulomb gas by the Monte-Carlo method using an isothermically isobaric ensemble”, TVT, 8:2 (1970), 277–285 ; High Temperature, 8:2 (1970), 261–268 |
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Organisations |
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