首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Measuring suprathermal electron parameters in space plasmas: Implementation of the quasi-thermal noise spectroscopy with kappa distributions using in situ Ulysses/URAP radio measurements in the solar wind
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Measuring suprathermal electron parameters in space plasmas: Implementation of the quasi-thermal noise spectroscopy with kappa distributions using in situ Ulysses/URAP radio measurements in the solar wind

机译:测量suprathermal电子参数空间等离子体:实现的与kappa quasi-thermal噪声谱发行版使用原位尤利西斯/ URAP收音机测量太阳风

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摘要

We discuss the implementation of the quasi-thermal noise spectroscopy using kappa velocity distribution functions for the electrons. The quasi-thermal noise spectroscopy is a powerful tool for in situ space plasma diagnostics based on the analysis of the electrostatic field spectrum produced by the quasi-thermal fluctuations of electrons. The electron parameters are obtained by fitting the voltage power spectrum calculated with a model of the particle velocity distribution to the voltage measured at the terminals of an electric antenna. In the present work, the model of spectrum due to the electrons is depending on only three parameters and computed by assuming that the electron velocity distribution is a generalized Lorentzian or “kappa” distribution. The three fitted parameters are thus the electron density, total temperature and kappa index of the distribution. We show for the first time that this model produces good quality fittings for solar wind measurements obtained by the radio receiver on Ulysses, which should enable to improve the accuracy of the measurement of the total electron temperature and give better information on the suprathermal electrons.
机译:我们将讨论quasi-thermal的实现使用kappa速度噪声谱电子分布函数。quasi-thermal噪音光谱学是一个强大的基于原位空间等离子体诊断的工具在静电场的分析quasi-thermal产生的光谱电子的波动。参数拟合得到的电压功率谱计算的模型粒子速度分布电压以电动天线的终端。在目前的工作,由于频谱模型电子是取决于只有三个参数和计算假设电子速度分布是一个广义洛伦兹或“卡巴”分布。拟合参数的电子密度,总温度和卡巴的指数分布。这个模型产生优质配件太阳风测量获得的收音机尤利西斯接收机,应该可以提高测量的准确性总电子温度和提供更好的suprathermal电子信息。

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