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Laser ion source tests at the HRIBF on stable Sn, Ge and Ni isotopes

机译:在HRIBF上对稳定的Sn,Ge和Ni同位素进行激光离子源测试

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摘要

As one step in the ion source development for the Rare Isotope Accelerator, a hot-cavity laser ion source using an all-solid-state titanium-sapphire laser system has been tested at the Holifield Radioactive Ion Beam Facility. Resonance ionization of stable isotopes of Sn, Ge and Ni has been studied in a Ta hot cavity. Efficient three step resonant ionization schemes applying frequency tripling for the first excitation step and using auto-ionizing or atomic Rydberg states in the ionizing step have been identified for all three elements, resulting in laser ion beams of typically around 100 nA. By saturating most of the optical excitation steps involved, ionization efficiencies of 22%, 3.3% and 2.7% have been measured for Sn, Ge and Ni, respectively.
机译:作为稀有同位素加速器离子源开发的一个步骤,已经在Holifield放射性离子束实验室测试了使用全固态钛-蓝宝石激光系统的热腔激光离子源。已经在Ta热腔中研究了Sn,Ge和Ni稳定同位素的共振电离。对于所有三个元素,已经确定了有效的三步共振电离方案,该方案对第一激发步骤应用了三倍频,并在电离步骤中使用了自动电离或原子里德堡态,产生的激光离子束通常约为100 nA。通过使所涉及的大多数光学激发步骤饱和,对于Sn,Ge和Ni分别测得电离效率分别为22%,3.3%和2.7%。

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