等离子体速度-空间互关技术。

S. Mattingly, F. Skiff
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引用次数: 1

摘要

本文介绍了实验等离子体诊断的一项进展,并将其用于首次测量等离子体速度-空间互相关矩阵。速度空间相关函数可以通过局部测量来检测等离子体的集体波动。为了得到离子分布函数上等离子体涨落本征模结构,对该厄米矩阵进行了经验分解,即奇异值分解。介绍了一种基本理论,并与实验得到的模态进行了比较。这些模式的完整特征将留给未来的工作,但提供了这一努力的大纲。最后,讨论了在其他等离子体状态下对该实验技术的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A technique for plasma velocity-space cross-correlation.
An advance in experimental plasma diagnostics is presented and used to make the first measurement of a plasma velocity-space cross-correlation matrix. The velocity space correlation function can detect collective fluctuations of plasmas through a localized measurement. An empirical decomposition, singular value decomposition, is applied to this Hermitian matrix in order to obtain the plasma fluctuation eigenmode structure on the ion distribution function. A basic theory is introduced and compared to the modes obtained by the experiment. A full characterization of these modes is left for future work, but an outline of this endeavor is provided. Finally, the requirements for this experimental technique in other plasma regimes are discussed.
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