MODEL OF SOLITON TURBULENCE OF HIGH-FREQUENCY FLUCTUATIONS IN PARTIALLY MAGNETIZED PLASMA
- 作者: Kovaleva I.K.1, Kovalev A.T.1
-
隶属关系:
- Sadovsky Institute of Geosphere Dynamics of the Russian Academy of Sciences
- 期: 卷 165, 编号 6 (2024)
- 页面: 870-875
- 栏目: Articles
- URL: https://bakhtiniada.ru/0044-4510/article/view/259048
- DOI: https://doi.org/10.31857/S0044451024060142
- ID: 259048
如何引用文章
详细
A theoretical consideration of high-frequency microfluctuations formed by electron current across the magnetic field has been conducted. The Ginzburg–Landau equation with a nonlocal term was obtained to describe the dynamics of electron-cyclotron drift fluctuations. The thresholds for transition to turbulent regime and the boundaries within which soliton turbulence regime can be realized were determined, depending on the parameters of this equation.
作者简介
I. Kovaleva
Sadovsky Institute of Geosphere Dynamics of the Russian Academy of Sciences
Email: akoval@idg.chph.ras.ru
俄罗斯联邦, 119334, Moscow
A. Kovalev
Sadovsky Institute of Geosphere Dynamics of the Russian Academy of Sciences
编辑信件的主要联系方式.
Email: akoval@idg.chph.ras.ru
俄罗斯联邦, 119334, Moscow
参考
- N. Brenning, Space Sci.Rev. 59, 209 (1992).
- C.M. Swenson, M.C. Kelley, F. Primdahl et al., Geophys.Res. Lett. 17, 2337 (1990).
- O. Bolin, N. Brenning, C.M. Swenson et al., J.Geophys.Res.A 101, 19729 (1996).
- N. Brenning, R. L. Merlino, D. Lundin et al., Phys.Rev. Lett. 103, 225003 (2009).
- N. Brenning and D. Lundin, Phys.Plasmas 19, 093505 (2012).
- O. Koshkarov, A. Smolyakov, Y. Raitses et al., Phys.Rev. Lett. 122, 185001 (2019).
- K. Hara and S. Tsikata, Phys.Rev.E 102, 023202 (2020).
- А. Смоляков, Т. Зинтель, Л. Кедель и др., Физика плазмы 46, 408 (2020).
- S. Janhunen, A. Smolyakov, O. Chapurin et al., Phys.Plasmas 25, 011608 (2018).
- A. Ducrocq, J.C. Adam, A. Heron et al., Phys. Plasmas 13, 102111 (2006).
- S. I. Popel, S.V. Vladimirov, and V.N. Tsytovich, Phys.Rep. 259, 327 (1995).
- T. Kakutani and N. Sugimoto, Phys. Fluids 17, 1617 (1974).
- А. Найфэ, Введение в методы возмущений, Мир, Москва (1984).
- L. Wang, A. Hakim, B. Srinivasan et al., arXiv: 2107. 09874v2 [physics.plasm-ph] (2022).
- A. Smolyakov, O. Chapurin, W. Frias et al., Plasma Phys.Control. Fusion 59, 014041 (2017).
- I. S. Aranson and L. Kramer, Rev.Mod.Phys. 74, 99 (2002).
- В. Е. Захаров, А.Н. Пушкарев, В. Ф. Швец и др., Письма в ЖЭТФ 48, 79 (1988).
- А.И. Дьяченко, В. Е. Захаров, А.Н. Пушкарев и др., ЖЭТФ 96, 2026 (1989).
- M. Golles, S. Darmanyan, F. Lederer et al., Opt. Lett. 25, 293 (2000).
- A. Picozzi and J. Garnier, Phys.Rev. Lett. 107, 233901 (2011).
- S. Wabnitz, Opt. Lett. 20, 1979 (1995).
- V. S. Grigoryan and T. S. Muradyan, J. Opt. Soc. Amer. B 8, 1757 (1991).
- S.K. Turitsyn, Phys.Rev.E 54, R3125 (1996).
- Б.С. Кернер, В.В. Осипов, УФН 154, 201 (1989).
- Б.С. Кернер, В.В. Осипов, УФН 160, 2 (1990).
- J.M. Soto-Crespo, N. Akhmediev, and K. S. Chiang, Phys. Lett.A 291, 115 (2001).
- N. Akhmediev and J.M. Soto-Crespo, Phys. Lett.A 317, 287 (2003).
- Н. Ахмедиев, А. Анкевич, Диссипативные солитоны, Физматлит, Москва (2008).
- S.K. Lele, J.Comput.Phys. 103, 16 (1992).
补充文件
