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Smolyansky, Stanislav Aleksandrovich

Statistics Math-Net.Ru
Total publications: 22
Scientific articles: 21
Presentations: 1

Number of views:
This page:503
Abstract pages:5391
Full texts:2322
References:757
Professor
Doctor of physico-mathematical sciences (1987)
E-mail:

https://www.mathnet.ru/eng/person21670
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List of publications on ZentralBlatt

Publications in Math-Net.Ru Citations
2016
1. V. V. Dmitriev, A. V. Makhankov, A. D. Panferov, S. A. Smolyanskii, R. M. Yahibbaev, “Low-density approximation in the theory of creation the electron-positron plasma from vacuum in strong laser fields”, Izv. Sarat. Univ. Physics, 16:1 (2016),  5–9  mathnet
2015
2. V. V. Dmitriev, S. A. Smolyanskii, R. M. Yahibbaev, “Search for approximate methods for description of nonlinear vacuum $e^-e^+$ pairs creation processes in electromagnetic fields”, Izvestiya VUZ. Applied Nonlinear Dynamics, 23:3 (2015),  27–37  mathnet
2013
3. S. A. Smolyanskii, A. V. Prozorkevich, M. Bonitz, “Some problems of the kinetic description of vacuum particle creation in strong fields”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 2(31) (2013),  206–214  mathnet  elib
2012
4. A. V. Chertilin, A. G. Lavkin, R. S. Sitalieva, P. I. Smolyansky, S. A. Smolyansky, A. V. Tarakanov, “Vacuum creation of charged particles: some integral relations”, Izv. Sarat. Univ. Physics, 12:1 (2012),  30–32  mathnet
2010
5. D. B. Blaschke, V. V. Dmitriev, P. I. Smolyansky, S. A. Smolyanskii, A. V. Chertilin, “Exactly solvable model of instantaneously switched-on field in the kinetics of vacuum particle creation”, Izv. Sarat. Univ. Physics, 10:1 (2010),  45–50  mathnet
2008
6. D. B. Blaschke, S. V. Ilyine, G. Röpke, S. A. Smolyanskii, “Absorption as an indication of vacuum $e^{+}-e^{-}$ pair creation in a strong nonstationary electric field”, Izv. Sarat. Univ. Physics, 8:2 (2008),  46–50  mathnet
2007
7. A. G. Lavkin, A. V. Prozorkevich, S. A. Smolyanskii, A. V. Filatov, “Investigation of the parton plasma isotropization at the heavy ion collisions”, Izv. Sarat. Univ. Physics, 7:2 (2007),  50–55  mathnet
1993
8. S. V. Erokhin, A. V. Prozorkevich, S. A. Smolyanskii, V. D. Toneev, “Generalized kinetic equation and its application to models of relativistic nuclear dynamics”, TMF, 95:1 (1993),  74–86  mathnet  zmath; Theoret. and Math. Phys., 95:1 (1993), 416–423 2
1987
9. V. N. Komarov, S. A. Smolyanskii, “Solutions of the kinetic equation for a collisionless plasma in an external electromagnetic field”, TMF, 72:2 (1987),  296–305  mathnet; Theoret. and Math. Phys., 72:2 (1987), 892–899  isi 1
1982
10. A. V. Prozorkevich, V. L. Samorodov, S. A. Smolyanskii, “Quantum relativistic hydrodynamics of systems with broken symmetry. I. Local-equilibrium state”, TMF, 52:3 (1982),  463–472  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 52:3 (1982), 920–926  isi 6
11. S. A. Smolyanskii, “Quantum relativistic hydrodynamics of systems with broken symmetry II. Nonequilibrium state”, TMF, 52:2 (1982),  292–300  mathnet  zmath; Theoret. and Math. Phys., 52:2 (1982), 809–814  isi 4
1981
12. M. B. Birman, D. N. Zubarev, S. A. Smolyanskii, “Quantum hydrodynamics of self-gravitating matter”, TMF, 48:3 (1981),  356–372  mathnet  zmath; Theoret. and Math. Phys., 48:3 (1981), 796–806  isi 1
1979
13. D. N. Zubarev, A. V. Prozorkevich, S. A. Smolyanskii, “Derivation of nonlinear generalized equations of quantum relativistic hydrodynamics”, TMF, 40:3 (1979),  394–407  mathnet  mathscinet; Theoret. and Math. Phys., 40:3 (1979), 821–831  isi 78
1978
14. Yu. S. Gangnus, A. V. Prozorkevich, S. A. Smolyanskii, “Kinetic properties of a pion gas”, TMF, 35:1 (1978),  68–75  mathnet; Theoret. and Math. Phys., 35:1 (1978), 321–326 4
1977
15. A. V. Prozorkevich, S. A. Smolyanskii, “Covariant formalism in the theory of quantum relativistic kinetic equations”, TMF, 31:1 (1977),  118–124  mathnet  mathscinet; Theoret. and Math. Phys., 31:1 (1977), 357–361 5
1976
16. A. V. Prozorkevich, S. A. Smolyanskii, “Theory of quantum relativistic kinetic equations”, TMF, 28:2 (1976),  262–266  mathnet; Theoret. and Math. Phys., 28:2 (1976), 773–776 5
1975
17. A. V. Prozorkevich, S. A. Smolyanskii, “Derivation of relativistic transport equations of a plasma in a strong electromagnetic field”, TMF, 23:3 (1975),  409–417  mathnet; Theoret. and Math. Phys., 23:3 (1975), 608–614 3
1974
18. R. Kh. Amirov, S. A. Smolyanskii, L. Sh. Shekhter, “On the theory of quantum kinetic processes in strong alternating fields”, TMF, 21:2 (1974),  247–257  mathnet; Theoret. and Math. Phys., 21:2 (1974), 1116–1124 10
1973
19. R. Kh. Amirov, S. A. Smolyanskii, L. Sh. Shekhter, “Derivation of kinetic equations of classical statistical mechanics in the weak-interaction approximation by the nonequilibrium statistical operator method”, TMF, 16:1 (1973),  128–134  mathnet  zmath; Theoret. and Math. Phys., 16:1 (1973), 723–728 2
1972
20. Yu. N. Zaiko, L. I. Kats, N. N. Kireev, S. A. Smolyanskii, “О распространении электромагнитных волн в разреженной плазме, помещенной в переменное магнитное поле”, TVT, 10:2 (1972),  232–242  mathnet
1966
21. S. A. Smolyanskii, N. M. Flaisher, “A method for solving Fredholm integral equations of the second kind”, Izv. Vyssh. Uchebn. Zaved. Mat., 1966, no. 4,  127–128  mathnet  mathscinet  zmath

2010
22. A. G. Lazerson, S. A. Smolyanskii, “Introduction”, Izv. Sarat. Univ. Physics, 10:1 (2010),  3  mathnet

Presentations in Math-Net.Ru
1. Vacuum particle creation under action of a strong external field: an example of irreversible behavior of the system with the $t$-invariant kinetic equation of the Vlasov type
S. A. Smolyanskii
International Conference "Irreversibility Problem in Classical and Quantum Dynamical Systems"
December 9, 2011 15:00

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