...
首页> 外文期刊>The Astrophysical journal >DENSITY FLUCTUATIONS AND THE ACCELERATION OF ELECTRONS BY BEAM-GENERATED LANGMUIR WAVES IN THE SOLAR CORONA
【24h】

DENSITY FLUCTUATIONS AND THE ACCELERATION OF ELECTRONS BY BEAM-GENERATED LANGMUIR WAVES IN THE SOLAR CORONA

机译:太阳日冕中光束产生的朗缪尔波的密度波动和电子加速

获取原文

摘要

Non-thermal electron populations are observed throughout the heliosphere. The relaxation of an electron beam is known to produce Langmuir waves which, in turn, may substantially modify the electron distribution function. As the Langmuir waves are refracted by background density gradients and as the solar and heliospheric plasma density is naturally perturbed with various levels of inhomogeneity, the interaction of Langmuir waves with non-thermal electrons in inhomogeneous plasmas is an important topic. We investigate the role played by ambient density fluctuations on the beam-plasma relaxation, focusing on the effect of acceleration of beam electrons. The scattering of Langmuir waves off turbulent density fluctuations is modeled as a wavenumber diffusion process which is implemented in numerical simulations of the one-dimensional quasilinear kinetic equations describing the beam relaxation. The results show that a substantial number of beam electrons are accelerated when the diffusive timescale in wavenumber space τ D is of the order of the quasilinear timescale τql, while when τ D τql, the beam relaxation is suppressed. Plasma inhomogeneities are therefore an important means of energy redistribution for waves and hence electrons, and so must be taken into account when interpreting, for example, hard X-ray or Type?III emission from flare-accelerated electrons.
机译:在整个太阳圈中观察到非热电子种群。已知电子束的弛豫会产生朗缪尔波,而朗缪尔波又会实质上改变电子分布函数。由于朗缪尔波被背景密度梯度折射,并且太阳和日圆等离子密度自然受到各种不均匀度的干扰,因此朗缪尔波与非热电子在不均匀等离子体中的相互作用成为一个重要的话题。我们研究了环境密度波动对电子束等离子体弛豫的作用,重点是电子束加速的影响。 Langmuir波在湍流密度波动下的散射被建模为波数扩散过程,该过程在描述束弛豫的一维拟线性动力学方程的数值模拟中实现。结果表明,当波数空间τD中的扩散时间尺度为准线性时间尺度τql的数量级时,大量的束流电子被加速,而当τDτql时,束流弛豫得到抑制。因此,等离子体的不均匀性是能量重新分配给波并进而重新分配给电子的一种重要手段,因此,在解释(例如)来自火炬加速电子的硬X射线或III型发射时,必须考虑在内。

著录项

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