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Thin current sheets: from the work of Ginzburg and Syrovatskii to the present day

机译:当前薄表:从金茨堡和西罗瓦茨基的作品到今天

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We outline the history and development of the theory of thin current sheets in a collisionless space plasma from the early ideas of V L Ginzburg and S I Syrovatskii to the present day. We review the key achievements of the quasi adiabatic theory, which provided insight into the fine structure of thin current sheets and enabled a comparison with experiment. This comparison showed the quasi-adiabatic approach to be more effective than the classical MHD approximation. With the development of the quasi-adiabatic theory in the last two decades, the existence of a number of new thin current sheet features, such as multi-scaling, metastability, and embedding, has been predicted and subsequently confirmed in situ; the role of individual particle populations in the formation of the current sheet fine structure has also been investigated. The role of nonadiabatic effects in accelerating plasma beamlets interacting with current sheets is examined. Asymmetry mechanisms in thin current sheets in the presence of a magnetic shear component are described. A study is carried out of current sheet self-organization processes leading to the formation of a shear magnetic component consistent with currents flowing in the plasma. It is demonstrated that the ongoing development of the theory of thin current structures is a logical continuation of Syrovatskii's and Ginzburg's ideas on cosmic rays and reconnected current sheets in the solar corona.
机译:我们概述了从V L Ginzburg和S I Syrovatskii的早期思想到今天的无碰撞空间等离子体中薄电流片理论的历史和发展。我们回顾了准绝热理论的关键成果,该理论为深入研究薄电流板的精细结构提供了见识,并与实验进行了比较。这种比较表明准绝热方法比经典的MHD逼近方法更有效。随着近二十年来准绝热理论的发展,已经预测并随后在现场证实了许多新的薄电流片特征的存在,例如多尺度,亚稳性和嵌入。还研究了单个粒子群在形成当前薄片精细结构中的作用。检查了非绝热效应在加速等离子体小束与电流板相互作用中的作用。描述了在存在磁剪切分量的情况下薄电流板中的不对称机制。对电流表的自组织过程进行了研究,该过程导致形成与等离子体中流动的电流相一致的剪切磁性成分。可以证明,薄电流结构理论的不断发展是Syrovatskii和Ginzburg关于宇宙射线和日冕中重新连接的电流片的理论的逻辑延续。

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