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实验室等离子体中哨声波对共振电子进动角散射的直接探测。

Direct detection of resonant electron pitch angle scattering by whistler waves in a laboratory plasma.

机构信息

Department of Physics, University of California, Los Angeles, California 90095, USA.

Department of Atmospheric and Oceanic Sciences, University of California, Los Angeles, California 90095, USA.

出版信息

Phys Rev Lett. 2014 Apr 11;112(14):145006. doi: 10.1103/PhysRevLett.112.145006. Epub 2014 Apr 10.

Abstract

Resonant interactions between energetic electrons and whistler mode waves are an essential ingredient in the space environment, and in particular in controlling the dynamic variability of Earth's natural radiation belts, which is a topic of extreme interest at the moment. Although the theory describing resonant wave-particle interaction has been present for several decades, it has not been hitherto tested in a controlled laboratory setting. In the present Letter we report on the first laboratory experiment to directly detect resonant pitch angle scattering of energetic (∼keV) electrons due to whistler mode waves. We show that the whistler mode wave deflects energetic electrons at precisely the predicted resonant energy, and that varying both the maximum beam energy, and the wave frequency, alters the energetic electron beam very close to the resonant energy.

摘要

在空间环境中,高能电子与哨声模波的共振相互作用是一个重要的组成部分,特别是在控制地球自然辐射带的动态可变性方面,这是目前极其关注的话题。尽管描述共振波粒相互作用的理论已经存在了几十年,但迄今为止尚未在受控的实验室环境中进行测试。在本信中,我们报告了第一个直接检测因哨声模波引起的高能(∼keV)电子共振角散射的实验室实验。我们表明,哨声模波在精确预测的共振能量处使高能电子发生偏转,并且改变最大束能和波频率都可以使高能电子束非常接近共振能量。

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