Filamentation of current-carrying plasma shells
Various types of magnetohydrodynamic instabilities develop in the current-carrying plasma. One type of instability is the filaments, which are manifested in the formation of individual current channels. In this paper, based on the methods of the theory of small perturbations, we analyzed the development of thermal instabilities leading to the formation of filaments. The paper compares the results of the theory with the results of experiments on the compression of plasma liners carried out on the IMRI-5 generator.
Download file
Counter downloads: 143
Keywords
филаменты, плазменный лайнер, сильноточный генератор, filaments, plasma liner, high-current generatorAuthors
Name | Organization | |
Oreshkin V.I. | Institute of High Current Electronics SB RAS; National Research Tomsk Polithecnical University | Oreshkin@ovpe.hcei.tsc.ru |
Baksht R.B. | Tel-Aviv University | bakshtrina@gmail.com |
Zhigalin A.S. | Institute of High Current Electronics SB RAS | zhigalin@ovpe2.hcei.tsc.ru |
Oreshkin E.V. | P.N. Lebedev Physical Institute of the RAS | bombom774@gmail.com |
Rousskikh A.G. | Institute of High Current Electronics SB RAS | russ@ovpe2.hcei.tsc.ru |
References
Artsimovich L.A. Controlled Thermonuclear Reactions. - Moscow: Fizmatgiz, 1961. - 467 p.
Kurchatov I. // Atom. Energiya. - 1956. - V. 1. - No. 3. - P. 65.
Smirnov V. // Plasma Physics and Controlled Fusion. - 1991. - V. 33. - No. 13. - P. 1697.
Ryutov D.D., Derzon M. S., and Matzen M. K. // Rev. Mod. Phys. - 2000. - V. 72. - No. 1. - P. 167-223.
Haines M.G. // Plasma Physics and Controlled Fusion. - 2011. - V. 53. - No. 9. - P. 093001.
Aleksandrov V.V. et al. // Plasma Phys. Rep. - 2014. - V. 40. - No. 12. - P. 939-954.
Gomez M.R., Slutz S.A., Sefkow A.B., et al. // Phys. Rev. Lett. - 2014. - V. 113. - No. 15. - P. 155003.
Peterson K.J. et al. // Phys. Rev. Lett. - 2014. - V. 112. - No. 13. - P. 135002.
Awe T.J. et al. // Phys. Rev. Lett. - 2016. - V. 116. - No. 6. - P. 065001.
Budko A. et al. // Exp. Theor. Phys. J. - 1989. - V. 95. - No. 2. - P. 496-513.
Baksht R.B., Datsko I.M., Kim A.A., et al. // Plasma Phys. Rep. - 1995. - V. 21. - P. 907-912.
Labetsky A.Yu., Baksht R.B., Oreshkin V.I., et al. // IEEE Trans. Plasma Sci. - 2002. - V. 30. - No. 2. - P. 524-531.
Velikovich A.L., Cochran F.L., Davis J., et al. // Phys. Rev. Lett. - 1996. - V. 77. - No. 5. - P. 853.
Chaikovsky S.A., Labetsky A.Yu., Oreshkin V.I., et al. // Laser and Particle Beams. - 2003. - V. 21. - No. 2. - P. 255-264.
Mikitchuk D., Stollberg C., Doron R., et al. // IEEE Trans. Plasma Sci. - 2014. - V. 42. - No. 10. - P. 2524-2525.
Rousskikh A.G., Zhigalin A.S., Oreshkin V.I., et al. // IEEE Trans. Plasma Sci. - 2018. - V. 46. - No. 11. - P. 3849-3854.
Rousskikh A.G., Zhigalin A.S., Oreshkin V.I., et al. // Phys. Plasmas. - 2014. - V. 21. - No. 5. - P. 052701.
Baksht R.B., Oreshkin V.I., Rousskikh A.G., and Zhigalin A.S. // Plasma Phys. Controlled Fusion. - 2018. - V. 60. - No. 3. - P. 035015.
Rousskikh A.G., Zhigalin A.S., Oreshkin V.I. et al. // Phys. Plasmas. - 2011. - V. 18. - No. 9. - P. 092707.
Rousskikh A.G., Zhigalin A.S., Oreshkin V.I., et al. // Phys. Plasmas. - 2016. - V. 23. - No. 6. - P. 063502.
Kadomtsev B. // Reviews of Plasma Physics / ed. M.A. Leontovich. - N.Y.: Consultants Bureau, 1980. - 141 p.
Oreshkin V.I. // Phys. Plasmas. - 2008. - V. 15. - No. 9. - P. 092103.
Oreshkin V.I. // Techn. Phys. Lett. - 2009. - V. 35. - No. 1. - P. 36-39.
Baksht R.B., Tkachenko S.I., Romanova V.M., et al. // Tech. Phys. - 2013. - V. 58. - No. 8. - P. 1129-1137.
Oreshkin V.I., Rousskikh A.G., Chaikovsky S.A., et al. // Phys. Plasmas. - 2010. - V. 17. - No. 7. - P. 072703.
Брагинский С.И. Явления переноса в плазме // Вопросы теории плазмы / под ред. М.А. Леонтовича. Вып. 1. - М.: Госатомиздат, 1963. - 183 с.
Landau L.D. et al. Electrodynamics of Continuous Media. - Elsevier, 1984.