Fantz U, Gutser R, Wimmer C
Max-Planck-Institut für Plasmaphysik, EURATOM Association, 85748 Garching, Germany.
Rev Sci Instrum. 2010 Feb;81(2):02B102. doi: 10.1063/1.3258428.
Basic experiments are carried out to study the cesium evaporation and desorption from surfaces at different temperatures in an environment, which is very close to the conditions of negative hydrogen ion sources for fusion applications: in a vacuum base pressure of 10(-5) mbar and in a hydrogen plasma in the Pa-range. Several diagnostic techniques such as emission and absorption spectroscopy, a surface ionization detector, and a quartz-microbalance have been utilized to determine the cesium densities, evaporation and desorption rates. The work function of a cesiated surface measured by the photoelectric effect degrades with increasing plasma-off time. Impurities and cesium compounds are detected by a residual mass analyzer.
开展了基础实验,以研究在接近聚变应用中负氢离子源条件的环境下,不同温度下铯从表面的蒸发和解吸情况:真空基础压力为10(-5) 毫巴,氢等离子体压力在帕斯卡范围。已采用发射和吸收光谱、表面电离探测器以及石英微量天平等多种诊断技术来确定铯密度、蒸发和解吸速率。通过光电效应测量的铯化表面的功函数随等离子体关闭时间的增加而降低。用残余质量分析仪检测杂质和铯化合物。