首页> 外文期刊>Annales Geophysicae >Electron cyclotron maser instability (ECMI) in strong magnetic guide field reconnection
【24h】

Electron cyclotron maser instability (ECMI) in strong magnetic guide field reconnection

机译:强磁导场重连接中的电子回旋加速器激射不稳定性(ECMI)

获取原文
获取原文并翻译 | 示例
           

摘要

The ECMI model of electromagnetic radiation from electron holes is shown to be applicable to spontaneous magnetic reconnection. We apply it to reconnection in strong current-aligned magnetic guide fields. Such guide fields participate only passively in reconnection, which occurs in the antiparallel components to both sides of the guide-field-aligned current sheets with current carried by kinetic Alfv,n waves. Reconnection generates long (the order of hundreds of electron inertial scales) electron exhaust regions at the reconnection site X point, which are extended perpendicular to the current and the guide fields. Exhausts contain a strongly density-depleted hot electron component and have properties similar to electron holes. Exhaust electron momentum space distributions are highly deformed, exhibiting steep gradients transverse to both the reconnecting and guide fields. Such properties suggest application of the ECMI mechanism with the fundamental ECMI X-mode emission beneath the nonrelativistic guide field cyclotron frequency in localized source regions. An outline of the mechanism and its prospects is given. Potential applications are the kilometric radiation (AKR) in auroral physics, solar radio emissions during flares, planetary emissions and astrophysical scenarios (radiation from stars and compact objects) involving the presence of strong magnetic fields and field-aligned currents. Drift of the exhausts along the guide field maps the local field and plasma properties. Escape of radiation from the exhaust and radiation source region still poses a problem. The mechanism can be studied in 2-D particle simulations of strong guide field reconnection which favours 2-D, mapping the deformation of the electron distribution perpendicular to the guide field, and using it in the numerical calculation of the ECMI growth rate. The mechanism suggests also that reconnection in general may become a source of the ECMI with or without guide fields. This is of particular interest in extended turbulent plasmas where reconnection serves as an integral dissipation mechanism of turbulent energy in myriads of small-scale current filaments.
机译:证明了来自电子空穴的电磁辐射的ECMI模型适用于自发磁重连接。我们将其应用于在电流对齐的强磁场中的重新连接。这样的引导场仅被动地参与重新连接,该重新连接发生在由运动Alfv,n波承载的电流在与引导场对齐的电流板两侧的反平行分量中。重新连接会在重新连接位置X点上生成长的(数百个电子惯性标度的数量级)电子排气区域,该区域垂直于电流场和引导场延伸。排气中含有大量的密度降低的热电子成分,其性质类似于电子空穴。排气电子动量空间分布高度变形,在重新连接场和引导场上均呈现出陡峭的梯度。这样的性质表明,在局部源区域中,非相对论性导引场回旋加速器频率之下的基本ECMI X模发射具有ECMI机制的应用。概述了该机制及其前景。潜在的应用是极光物理学中的公里辐射(AKR),耀斑期间的太阳辐射发射,行星发射以及天体物理场景(来自恒星和紧凑物体的辐射),其中涉及强磁场和场对准电流的存在。沿引导场的排气漂移映射了局部场和等离子体特性。从排气和辐射源区域逸出辐射仍然是一个问题。可以在有利于二维的强引导场重新连接的二维粒子模拟中研究该机制,将其映射成垂直于引导场的电子分布的变形,并将其用于ECMI增长率的数值计算。该机制还暗示,无论有无指导字段,重新连接通常都可能成为ECMI的来源。这在扩展的湍流等离子体中特别有意义,其中重新连接充当无数小规模电流灯丝中湍流能量的整体耗散机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号