Lettry J, Alessi J, Faircloth D, Gerardin A, Kalvas T, Pereira H, Sgobba S
CERN, 1211 Geneva 23, Switzerland.
Rev Sci Instrum. 2012 Feb;83(2):02A728. doi: 10.1063/1.3680078.
Linac4 accelerator of Centre Européen de Recherches Nucléaires is under construction and a RF-driven H(-) ion source is being developed. The beam current requirement for Linac4 is very challenging: 80 mA must be provided. Cesiated plasma discharge ion sources such as Penning or magnetron sources are also potential candidates. Accelerator ion sources must achieve typical reliability figures of 95% and above. Investigating and understanding the underlying mechanisms involved with source failure or ageing is critical when selecting the ion source technology. Plasma discharge driven surface ion sources rely on molybdenum cathodes. Deformation of the cathode surfaces is visible after extended operation periods. A metallurgical investigation of an ISIS ion source is presented. The origin of the deformation is twofold: Molybdenum sputtering by cesium ions digs few tenths of mm cavities while a growth of molybdenum is observed in the immediate vicinity. The molybdenum growth under hydrogen atmosphere is hard and loosely bound to the bulk. It is, therefore, likely to peel off and be transported within the plasma volume. The observation of the cathode, anode, and extraction electrodes of the magnetron source operated at BNL for two years are presented. A beam simulation of H(-), electrons, and Cs(-) ions was performed with the IBSimu code package to qualitatively explain the observations. This paper describes the operation conditions of the ion sources and discusses the metallurgical analysis and beam simulation results.
欧洲核子研究中心的直线加速器4正在建设中,一种射频驱动的H(-)离子源正在研发。直线加速器4对束流的要求极具挑战性:必须提供80毫安的束流。诸如潘宁源或磁控管源等铯化等离子体放电离子源也是潜在的候选者。加速器离子源必须达到95%及以上的典型可靠性指标。在选择离子源技术时,研究和理解与源故障或老化相关的潜在机制至关重要。等离子体放电驱动的表面离子源依赖于钼阴极。在长时间运行后,阴极表面会出现变形。本文介绍了对一台ISIS离子源的冶金学研究。变形的原因有两个方面:铯离子对钼的溅射会挖出几十微米深的空洞,同时在紧邻区域会观察到钼的生长。在氢气气氛下钼的生长物坚硬且与主体结合松散。因此,它很可能会剥落并在等离子体区域内传输。本文还介绍了在布鲁克海文国家实验室运行两年的磁控管源的阴极、阳极和引出电极的观察结果。使用IBSimu代码包对H(-)、电子和Cs(-)离子进行了束流模拟,以定性地解释这些观察结果。本文描述了离子源的运行条件,并讨论了冶金分析和束流模拟结果。