Development of a gas cell-based laser ion source for RIKENPALIS

Development of a gas cell-based laser ion source for RIKENPALIS
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为 RIKENPALIS 开发基于气室的激光离子源

DOI:
10.1007/s10751-013-0817-6
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发表时间:
2013
影响因子:
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通讯作者:
Y. Hirayama
Y. Hirayama
中科院分区:
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文献类型:
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作者:
T. Sonoda;M. Wada;H. Tomita;C. Sakamoto;T. Takatsuka;T. Noto;H. Iimura;Y. Matsuo;T. Kubo;T. Shinozuka;T. Wakui;H. Mita;S. Naimi;T. Furukawa;Y. Itou;P. Schury;H. Miyatake;S. Jeong;H. Ishiyama;Y. Watanabe;Y. Hirayama

文献摘要

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我们研制了一台带有光束引出系统的激光电离气室样机。该装置用于寄生激光离子源(PALIS),它将作为SLOWRI的一部分被实施到RIKEN的碎片分离器BigRIPS中。已证实离线共振激光电离在气室内稳定的Co、Cu、Fe、Ni、Ti、Nb、Sn、In和Pd,离子通过SPIG和QMS被提取和传输到高真空区(Sonoda等,Nucl Instrum Meth B 295:1,2013)。
We developed a prototype laser ionization gas cell with a beam extraction system. This device is for use of PArasitic Laser Ion-Source (PALIS), which will be implemented into RIKEN’s fragment separator, BigRIPS as a part of SLOWRI. Off-line resonant laser ionization for stable Co, Cu, Fe, Ni, Ti, Nb, Sn, In and Pd inside the gas cell, ion extraction and transport to the high-vacuum region via SPIG and QMS have been confirmed (Sonoda et al, Nucl Instrum Meth B 295:1, 2013).