Lost electron energy distribution of electron cyclotron resonance ion sources.

I. Izotov, V. Skalyga, O. Tarvainen
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引用次数: 1

Abstract

To ensure further progress in the development of electron cyclotron resonance ion sources (ECRISs), deeper understanding of the underlying physics is required. The electron energy distribution (EED), which is crucial for the performance of an ECRIS, still remains obscure. The present paper focuses on the details of a well-developed technique of measuring the EED of electrons escaping axially from the magnetically confined plasma of an ECRIS. The method allows for better than 500 eV energy resolution over a range of electron energies from 4 keV to over 1 MeV. We present detailed explanation of the experimental procedure and the following data processing peculiarities with examples and discuss possible reasons of energetic electron losses from the magnetic trap, in particular the role of RF pitch angle scattering. Finally, an experimental method of approximating the confined EED based on the measurement of escaping electrons is described.
电子回旋共振离子源的损失电子能量分布。
为了确保电子回旋共振离子源(ECRISs)的进一步发展,需要对其基础物理有更深入的了解。电子能量分布(EED)是影响ECRIS性能的关键因素,但目前仍不清楚。本文重点介绍了一种成熟的测量电子从ECRIS的磁约束等离子体轴向逸出的电子能谱的技术。该方法允许在4 keV到1 MeV以上的电子能量范围内获得优于500 eV的能量分辨率。我们用实例详细说明了实验过程和以下数据处理特点,并讨论了磁阱中高能电子损失的可能原因,特别是射频俯仰角散射的作用。最后,介绍了一种基于逸出电子测量的近似受限电子能效比的实验方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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