Development of Gas-jet Transport System Coupled to the RIKEN Gas-filled Recoil Ion Separator GARIS for Superheavy Element Chemistry

H. Haba, D. Kaji, H. Kikunaga, T. Akiyama, N. Sato, K. Morimoto, A. Yoneda, K. Morita, T. Takabe, A. Shinohara
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引用次数: 31

Abstract

A gas-jet transport system for the superheavy element chemistry was coupled to the gas-filled recoil ion separator GARIS at the RIKEN Linear Accelerator. The performance of the system was investigated using 206 Fr and 245 Fm produced in the 40 Ar-induced reactions on 169 Tm and 208 Pb targets, respectively. Alpha particles of 206 Fr and 245 Fm separated with GARIS and transported by the gas-jet were measured with a rotating wheel system for α spectrometry under low background condition. The high gas-jet efficiency of over 80% was found to be independent of the beam intensity up to 2 particle µA. These results suggest that the GARIS/gas-jet system is a promising tool for future superheavy element chemistry at RIKEN.
与理研充气反冲离子分离器GARIS耦合的超重元素化学气体射流输运系统的研制
一个用于超重元素化学的气体喷射输运系统被耦合到RIKEN直线加速器的充气反冲离子分离器GARIS上。用40个ar诱导反应分别在169个Tm和208个Pb靶上产生206个Fr和245个Fm来研究该体系的性能。在低本底条件下,利用旋转轮系统对GARIS分离的206fr和245fm α粒子进行了测量。高达80%以上的高气体喷射效率与光束强度(2粒子µA)无关。这些结果表明,GARIS/气体喷射系统是RIKEN未来超重元素化学研究的一个有前途的工具。
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