激光器
激光束
梁(结构)
原子物理学
离子
离子束
光学
物理
离子源
材料科学
核物理学
光电子学
等离子体
量子力学
作者
O. S. Khwairakpam,R. Mancheva,Ming Au,Cyril Bernerd,Lisa Centofante,K. Chrysalidis,B. Crepieux,V. N. Fedosseev,Reinhard Heinke,T. Marchi,E. Mariotti,B. A. Marsh,A. Monetti,P. Nicolosi,S. Rothe,D. Scarpa,Maximilian Schuett,T. Stora,A. Andrighetto,M. Manzolaro
出处
期刊:Journal of physics
[IOP Publishing]
日期:2024-05-01
卷期号:2743 (1): 012066-012066
标识
DOI:10.1088/1742-6596/2743/1/012066
摘要
Abstract A two-step resonance photo-ionization scheme has been used to ionize samarium atoms in the SPES tantalum hot-cavity ion source. The effect of the ion load on the ion beam time structure and the laser enhancement of the ion yield has been studied at different ion source temperatures. Generally, the introduction of more positive ions (ion load) affects negatively the overall confinement of the laser ions inside the volume of the ion source. Possible enhancement of the laser ion confinement through the introduction of neutrals is observed as well. The ion load is also observed to affect the confinement in the transfer line much more than in the hot cavity. Measurement of the time structure with inverted polarity of the cavity DC heating supply confirmed the significance of the longitudinal potential for ion extraction. The laser enhancements of the ion yield are found to be sensitive to the ion load at low operating temperature of the ion source i.e. 1800°C, whereas at 2050°C and 2200°C, they are relatively stable till an ion load value of 1.2 µA.
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