Research of the Capillary Target-Ion Source System in On-Line Experiment

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ZHAO Zhi-Zheng, YANG Yong-Feng, WANG Tong-Qing, GUO Ying-Xiang, GUO Bin, FAN Hong-Mei, ZU Kai-Ling, WANG Xu-Dong, ZHENG Zhao-Miao, LIU Jun-Hui and LEI Xiang-Guo. Research of the Capillary Target-Ion Source System in On-Line Experiment[J]. Chinese Physics C, 2001, 25(11): 1106-1112.
ZHAO Zhi-Zheng, YANG Yong-Feng, WANG Tong-Qing, GUO Ying-Xiang, GUO Bin, FAN Hong-Mei, ZU Kai-Ling, WANG Xu-Dong, ZHENG Zhao-Miao, LIU Jun-Hui and LEI Xiang-Guo. Research of the Capillary Target-Ion Source System in On-Line Experiment[J]. Chinese Physics C, 2001, 25(11): 1106-1112. shu
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Received: 2000-12-07
Revised: 1900-01-01
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Research of the Capillary Target-Ion Source System in On-Line Experiment

    Corresponding author: ZHAO Zhi-Zheng,
  • Institute of Modern Physics, The Chinese Academy of Sciences, Lanzhou 730000, China

Abstract: In order to study new isotopes and nuclear decay properties in the A>170 mass region, the laser ion source is needed and developed. For on line isotope separator, it is required that the capillary ionization has a speciality of low hot ionization efficiency and high ion extraction efficiency. The principle of the hot capillary ionization was described. The employment of Nb capillary reduces the temperature for forming the plasma potential and inhibitory hot ionization. The ionization tube is made of a Nb capillary of 2.2mm outside diameter, 1.7mm inside diameter and 30mm effective length. The temperature is 1600-2500K when the current is 40-100A. The target chamber is structured by Ta tube of 0.1mm wall thickness and windows of 6μm Ta foil at two ends. Its maximum temperature is 2200K with the current 300A. The test experiment with on-line conditions at isotope separator ISOLAND has been performed.167Yb(T1/2=17.5min) isotope was produced in nuclear reaction 18O(50MeV/u)+natTa→167Yb. In the condition of target chamber temperature 2130K and capillary temperature 2130K, the total efficiency is 0.2%. This target ion source system will be satisfied in laser ion source.

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