|
|
Publications in Math-Net.Ru |
Citations |
|
2021 |
1. |
A. B. Shvartsburg, L. M. Vasilyak, S. P. Vetchinin, K. V. Alibin, O. D. Volpyan, Yu. A. Obod, V. Ya. Pecherkin, P. A. Privalov, D. V. Churikov, “Resonant scattering of plane electromagnetic waves in the GHz range by ring dielectric linear structures”, Optics and Spectroscopy, 129:2 (2021), 214–217 ; Optics and Spectroscopy, 129:2 (2021), 252–255 |
3
|
|
2018 |
2. |
A. B. Shvartsburg, V. Ya. Pecherkin, L. M. Vasilyak, S. P. Vetchinin, V. E. Fortov, “Dielectric resonant magnetic dipoles: paradoxes, prospects, and first experiments”, UFN, 188:7 (2018), 780–789 ; Phys. Usp., 61:7 (2018), 698–706 |
8
|
|
2015 |
3. |
D. S. Lapitskiy, V. S. Filinov, L. V. Deputatova, L. M. Vasilyak, V. I. Vladimirov, V. Ya. Pecherkin, “Capture and retention of charged dust particles in electrodynamic traps”, TVT, 53:1 (2015), 3–10 ; High Temperature, 53:1 (2015), 1–8 |
26
|
|
2014 |
4. |
L. M. Vasilyak, S. P. Vetchinin, V. A. Panov, V. Ya. Pecherkin, É. E. Son, “Nonlinear impulse current spreading and electrical breakdown in soil”, TVT, 52:6 (2014), 825–831 ; High Temperature, 52:6 (2014), 797–802 |
8
|
|
2011 |
5. |
L. M. Vasilyak, D. N. Polyakov, V. E. Fortov, V. V. Shumova, “Parameters of the Positive Column of Glow Discharge with Dust Particles”, TVT, 49:5 (2011), 643–648 ; High Temperature, 49:5 (2011), 623–628 |
24
|
|
2003 |
6. |
L. M. Vasilyak, I. P. Vereshchagin, V. V. Glazkov, I. G. Kononov, A. V. Orlov, D. N. Polyakov, O. A. Sinkevich, M. V. Sokolova, A. G. Temnikov, K. N. Firsov, “Investigation of electric discharges in the vicinity of a charged aerosol cloud and their interaction with a laser-induced spark”, TVT, 41:2 (2003), 200–210 ; High Temperature, 41:2 (2003), 166–175 |
7
|
|
2002 |
7. |
V. V. Apollonov, L. M. Vasilyak, I. P. Vereshchagin, V. V. Glazkov, D. N. Gerasimov, I. G. Kononov, A. V. Orlov, D. N. Polyakov, O. A. Sinkevich, M. V. Sokolova, A. G. Temnikov, K. N. Firsov, “Experimental simulation of a laser lightning-protection system on a device with an artificial cloud of charged aqueous aerosol”, Kvantovaya Elektronika, 32:6 (2002), 523–527 [Quantum Electron., 32:6 (2002), 523–527 ] |
6
|
8. |
L. M. Vasilyak, S. P. Vetchinin, P. G. Kadieva, D. N. Polyakov, V. E. Fortov, A. V. Khotina, “Effect of pulsed nanosecond ionisation on the characteristics of an electric-discharge CO<sub>2</sub> laser”, Kvantovaya Elektronika, 32:5 (2002), 447–448 [Quantum Electron., 32:5 (2002), 447–448 ] |
9. |
V. V. Apollonov, L. M. Vasilyak, S. Yu. Kazantsev, I. G. Kononov, D. N. Polyakov, A. V. Saifulin, K. N. Firsov, “Electric-discharge guiding by a continuous spark by focusing CO<sub>2</sub>-laser radiation with a conic mirror”, Kvantovaya Elektronika, 32:2 (2002), 115–120 [Quantum Electron., 32:2 (2002), 115–120 ] |
21
|
|
2000 |
10. |
L. M. Vasilyak, S. P. Vetchinin, A. P. Nefedov, D. N. Polyakov, “Ordered structures of microparticles in a glow discharge”, TVT, 38:5 (2000), 701–705 ; High Temperature, 38:5 (2000), 675–679 |
13
|
|
1999 |
11. |
O. V. Butin, L. M. Vasilyak, “The dynamics of high-velocity ionizing wave in long discharge tubes”, TVT, 37:2 (1999), 333–335 ; High Temperature, 37:2 (1999), 309–311 |
1
|
|
1998 |
12. |
V. V. Balabanov, L. M. Vasilyak, S. V. Kostyuchenko, A. V. Krasnochub, “The radiation and energy contribution of a pulse-periodic discharge in helium”, TVT, 36:6 (1998), 853–857 ; High Temperature, 36:6 (1998), 829–834 |
|
1997 |
13. |
E. I. Asinovskii, L. M. Vasilyak, O. P. Nesterkin, “Potential wave under conditions of electric breakdown along an extended laser-induced spark”, TVT, 35:6 (1997), 858–865 ; High Temperature, 35:6 (1997), 845–852 |
|
1996 |
14. |
L. M. Vasilyak, S. V. Kostyuchenko, N. N. Kudryavtsev, A. S. Rodionov, “Dissipation of energy under conditions of breakdown of $\mathrm{He}$, $\mathrm{He}/\mathrm{Kr}$, $\mathrm{He}/\mathrm{Kr}/\mathrm{F}_2$ by high-velocity ionization wave”, TVT, 34:1 (1996), 20–23 ; High Temperature, 34:1 (1996), 16–19 |
|
1995 |
15. |
L. M. Vasilyak, S. V. Kostyuchenko, N. N. Kudryavtsev, A. S. Rodionov, “Pumping of a coaxial nitrogen laser by a high-speed ionisation wave”, Kvantovaya Elektronika, 22:12 (1995), 1207–1209 [Quantum Electron., 25:12 (1995), 1170–1172 ] |
1
|
16. |
L. M. Vasilyak, S. V. Kostyuchenko, A. V. Krasnochub, N. N. Kudryavtsev, G. A. Kurkin, “An experimental investigation of the electrodynamic and spectral characteristics of a nanosecond pulse-periodic discharge in chlorine”, TVT, 33:6 (1995), 826–832 ; High Temperature, 33:6 (1995), 822–828 |
1
|
|
1994 |
17. |
L. M. Vasilyak, Yu. M. Tokunov, “Deepening of the front of a high-velocity ionization wave at $250$ kV”, TVT, 32:4 (1994), 483–485 ; High Temperature, 32:4 (1994), 451–453 |
18. |
L. M. Vasilyak, S. V. Kostyuchenko, N. N. Kudryavtsev, I. V. Filyugin, “Fast ionisation waves under electrical breakdown conditions”, UFN, 164:3 (1994), 263–286 ; Phys. Usp., 37:3 (1994), 247–268 |
227
|
|
1992 |
19. |
E. I. Asinovskii, L. M. Vasilyak, S. Y. Unkovskii, “SPACE-TIME EVOLUTION OF ELECTRIC-DISCHARGE GUIDED BY LASER SPARK”, Zhurnal Tekhnicheskoi Fiziki, 62:3 (1992), 184–187 |
|
1991 |
20. |
E. I. Asinovskii, L. M. Vasilyak, S. Yu. Unkovskiĭ, “Electrooptical studies of electrical discharges along a laser spark in air”, TVT, 29:3 (1991), 453–460 ; High Temperature, 29:3 (1991), 352–358 |
|
1990 |
21. |
L. M. Vasilyak, S. P. Vetchinin, I. O. Kovalev, G. P. Kuz'min, D. N. Polyakov, A. M. Prokhorov, “FORMATION OF LONG LASER SPARKS BY PULSE CO2-LASER IN THE AIR”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 16:18 (1990), 1–4 |
22. |
L. M. Vasilyak, S. Yu. Unkovskiĭ, “О передающих свойствах лазерной искры”, TVT, 28:3 (1990), 590–593 |
|
1989 |
23. |
L. M. Vasilyak, S. Yu. Unkovskiĭ, “Generation of nanosecond and microsecond pulses in a neodymium glass laser”, Kvantovaya Elektronika, 16:5 (1989), 963–965 [Sov J Quantum Electron, 19:5 (1989), 626–627 ] |
|
1988 |
24. |
E. I. Asinovskii, L. M. Vasilyak, O. P. Nesterkin, “ABILITY OF LASER SPARK TO DIRECT THE ELECTRIC-DISCHARGE”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 14:1 (1988), 41–44 |
25. |
E. I. Asinovskii, L. M. Vasilyak, Yu. M. Tokunov, “Double emission peak from a coaxial nitrogen laser”, Kvantovaya Elektronika, 15:8 (1988), 1548–1551 [Sov J Quantum Electron, 18:8 (1988), 968–970 ] |
1
|
|
1987 |
26. |
E. I. Asinovskii, L. M. Vasilyak, V. V. Markovets, Yu. M. Tokunov, “RESEARCH ON HIGH-SPEED BREAKDOWN WAVES AT A VOLTAGE OF 250 KILOVOLTS”, Zhurnal Tekhnicheskoi Fiziki, 57:4 (1987), 703–711 |
27. |
E. I. Asinovskii, L. M. Vasilyak, O. P. Nesterkin, “Pulse electric-discharge guided by a long laser spark under the pressure in the atmosphere”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 13:4 (1987), 249–254 |
1
|
28. |
E. I. Asinovskii, L. M. Vasilyak, O. P. Nesterkin, “Impulsive electrical breakdown of air at atmospheric-pressure directed by a long laser spark”, TVT, 25:3 (1987), 447–453 ; High Temperature, 25:3 (1987), 325–330 |
1
|
|
1985 |
29. |
A. G. Abramov, E. I. Asinovskii, L. M. Vasilyak, “Накачка коаксиального азотного лазера волнами электрического пробоя”, TVT, 23:1 (1985), 177–179 |
|
1983 |
30. |
A. G. Abramov, E. I. Asinovskii, L. M. Vasilyak, “Investigation of the spatial and temporal dynamics of the pump and radiation waves in a nitrogen laser”, Kvantovaya Elektronika, 10:9 (1983), 1824–1828 [Sov J Quantum Electron, 13:9 (1983), 1203–1206 ] |
3
|
31. |
E. I. Asinovskii, L. M. Vasilyak, V. V. Markovets, “Wave breakdown of gas-filled gaps. II. Wave breakdown in distributed systems”, TVT, 21:3 (1983), 577–590 ; High Temperature, 21:3 (1983), 448–464 |
1
|
32. |
E. I. Asinovskii, L. M. Vasilyak, V. V. Markovets, “Волновой пробой газовых промежутков. I. Быстрые стадии пробоя”, TVT, 21:2 (1983), 371–381 |
|
1981 |
33. |
E. I. Asinovskii, L. M. Vasilyak, Yu. M. Tokunov, “Влияние кислорода на генерацию азотного лазера”, TVT, 19:4 (1981), 873–875 |
34. |
Yu. M. Tokunov, E. I. Asinovskii, L. M. Vasilyak, “Lasing and the dynamics of a nanosecond discharge in nitrogen”, TVT, 19:3 (1981), 491–496 ; High Temperature, 19:3 (1981), 347–351 |
|
1980 |
35. |
E. I. Asinovskii, L. M. Vasilyak, A. V. Kirillin, V. V. Markovets, “Decay rates of the helium $3^1D$ level excited by a nanosecond discharge”, TVT, 18:4 (1980), 668–676 ; High Temperature, 18:4 (1980), 519–526 |
|
1979 |
36. |
E. I. Asinovskii, R. Kh. Amirov, L. M. Vasilyak, V. V. Markovets, “К вопросу об измерении коэффициента диффузии атомарного водорода”, TVT, 17:5 (1979), 912–915 |
37. |
E. I. Asinovskii, L. M. Vasilyak, Yu. M. Tokunov, “Измерение эффективного времени жизни уровня $\mathrm{C}^3\Pi_u$ $(v=0)$ $\mathrm{N}_2$ в азоте и воздухе”, TVT, 17:4 (1979), 858–860 |
|
1975 |
38. |
E. I. Asinovskii, L. M. Vasilyak, A. V. Kirillin, V. V. Markovets, “Reaction of weakly ionized plasma to high-voltage nanosecond pulse”, TVT, 13:6 (1975), 1281–1282 ; High Temperature, 13:6 (1975), 1179–1180 |
39. |
L. M. Vasilyak, E. I. Asinovskii, A. V. Kirillin, V. V. Markovets, “Emission from a pulsed discharge in helium”, TVT, 13:1 (1975), 195–198 ; High Temperature, 13:1 (1975), 174–177 |
40. |
E. I. Asinovskii, L. M. Vasilyak, A. V. Kirillin, V. V. Markovets, “Nanosecond discharge in a weakly ionized plasma”, TVT, 13:1 (1975), 40–44 ; High Temperature, 13:1 (1975), 32–35 |
2
|
|
Organisations |
|
|
|
|