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Weibel instability for a streaming electron, counterstreaming e-e, and e-p plasmas with intrinsic temperature anisotropy

机译:具有固有温度各向异性的流电子,逆流e-e和e-p等离子体的Weibel不稳定

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摘要

(Received 8 February 2014; accepted 22 April 2014; published online 8 May 2014) The existence of Weibel instability for a streaming electron, counterstreaming electron-electron(e-e), and electron-positron (e-p) plasmas with intrinsic temperature anisotropy is investigated. The temperature anisotropy is included in the directions perpendicular and parallel to the streaming direction. It is shown that the beam mean speed changes the instability mode, for a streaming electron beam, from the classic Weibel to the Weibel-like mode. The analytical and numerical solutions approved that Weibel-like modes are excited for both counterstreaming e-e and e-p plasmas. The growth rates of the instabilities in e-e and e-p plasmas are compared. The growth rate is larger for e-p plasmas if the thermal anisotropy is small and the opposite is true for large thermal anisotropies. The analytical and numerical solutions are in good agreement only in the small parallel temperature and wave number limits, when the instability growth rate increases linearly with normalized wave number kc=ω_p.
机译:(2014年2月8日接收; 2014年4月22日接收; 2014年5月8日在线发布)研究了具有固有温度各向异性的流电子,逆流电子-电子(e-e)和电子-正电子(e-p)等离子体的Weibel不稳定性。在与流方向垂直和平行的方向上包括温度各向异性。结果表明,电子流的平均速度改变了电子流的不稳定性模式,从经典的韦贝尔模式转变为类似韦贝尔的模式。解析和数值解法证明,对于逆流e-e和e-p等离子体都激发了类似Weibel的模式。比较了e-e和e-p血浆中不稳定性的增长率。如果热各向异性小,则e-p等离子体的生长速率会更大,而对于大的热各向异性,则相反。当不稳定性增长速率随着归一化波数kc =ω_p线性增加时,解析解和数值解只有在较小的平行温度和波数限制下才能很好地吻合。

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