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卢瑟福·阿普尔顿实验室近期的H诊断、等离子体模拟以及2倍比例彭宁离子源的发展情况。

Recent H diagnostics, plasma simulations, and 2X scaled Penning ion source developments at the Rutherford Appleton Laboratory.

作者信息

Lawrie S R, Faircloth D C, Smith J D, Sarmento T M, Whitehead M O, Wood T, Perkins M, Macgregor J, Abel R

机构信息

STFC ISIS Pulsed Spallation Neutron and Muon Facility, Rutherford Appleton Laboratory, Oxfordshire, United Kingdom.

Tech-X UK Ltd., The Innovation Centre, Sci-Tech Daresbury, Cheshire, United Kingdom.

出版信息

Rev Sci Instrum. 2018 May;89(5):052101. doi: 10.1063/1.5011714.

DOI:10.1063/1.5011714
PMID:29864892
Abstract

A vessel for extraction and source plasma analyses is being used for Penning H ion source development at the Rutherford Appleton Laboratory. A new set of optical elements including an einzel lens has been installed, which transports over 80 mA of H beam successfully. Simultaneously, a 2X scaled Penning source has been developed to reduce cathode power density. The 2X source is now delivering a 65 mA H ion beam at 10% duty factor, meeting its design criteria. The long-term viability of the einzel lens and 2X source is now being evaluated, so new diagnostic devices have been installed. A pair of electrostatic deflector plates is used to correct beam misalignment and perform fast chopping, with a voltage rise time of 24 ns. A suite of four quartz crystal microbalances has shown that the cesium flux in the vacuum vessel is only increased by a factor of two, despite the absence of a dedicated cold trap. Finally, an infrared camera has demonstrated good agreement with thermal simulations but has indicated unexpected heating due to beam loss on the downstream electrode. These types of diagnostics are suitable for monitoring all operational ion sources. In addition to experimental campaigns and new diagnostic tools, the high-performance VSim and COMSOL software packages are being used for plasma simulations of two novel ion thrusters for space propulsion applications. In parallel, a VSim framework has been established to include arbitrary temperature and cesium fields to allow the modeling of surface physics in H ion sources.

摘要

一个用于提取和源等离子体分析的容器正在卢瑟福·阿普尔顿实验室用于潘宁H离子源的开发。一套包括单透镜的新光学元件已安装,其成功传输了超过80 mA的H束。同时,已开发出一个2倍缩放的潘宁源以降低阴极功率密度。该2倍源目前以10%的占空比提供65 mA的H离子束,满足其设计标准。目前正在评估单透镜和2倍源的长期可行性,因此已安装了新的诊断设备。一对静电偏转板用于校正束流未对准并进行快速斩波,电压上升时间为24 ns。一套四个石英晶体微量天平表明,尽管没有专用的冷阱,但真空容器中的铯通量仅增加了两倍。最后,一台红外摄像机已证明与热模拟结果吻合良好,但表明由于下游电极上的束流损失导致意外加热。这些类型的诊断适用于监测所有运行中的离子源。除了实验活动和新的诊断工具外,高性能的VSim和COMSOL软件包正用于两种用于空间推进应用的新型离子推进器的等离子体模拟。同时,已建立了一个VSim框架,以包括任意温度和铯场,从而能够对H离子源中的表面物理进行建模。

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