Temperature-dependent Saturation of Weibel-type Instabilities in Counter-streaming Plasmas

Skoutnev, V. and Hakim, A. and Juno, J. and TenBarge, J. M. (2019) Temperature-dependent Saturation of Weibel-type Instabilities in Counter-streaming Plasmas. The Astrophysical Journal, 872 (2). L28. ISSN 2041-8213

[thumbnail of Skoutnev_2019_ApJL_872_L28.pdf] Text
Skoutnev_2019_ApJL_872_L28.pdf - Published Version

Download (2MB)

Abstract

We present the first 2X2V continuum Vlasov–Maxwell simulations of interpenetrating, unmagnetized plasmas to study the competition between two-stream, Oblique, and filamentation modes in the weakly relativistic regime. We find that after nonlinear saturation of the fastest-growing two-stream and Oblique modes, the effective temperature anisotropy, which drives current filament formation via the secular Weibel instability, has a strong dependence on the internal temperature of the counter-streaming plasmas. The effective temperature anisotropy is significantly more reduced in colder than in hotter plasmas, leading to orders of magnitude lower magnetization for colder plasmas. A strong dependence of the energy conversion efficiency of Weibel-type instabilities on internal beam temperature has implications for determining their contribution to the observed magnetization of many astrophysical and laboratory plasmas.

Item Type: Article
Subjects: STM Academic > Physics and Astronomy
Depositing User: Unnamed user with email support@stmacademic.com
Date Deposited: 05 Jun 2023 06:02
Last Modified: 24 Jan 2024 04:28
URI: http://article.researchpromo.com/id/eprint/964

Actions (login required)

View Item
View Item