arXiv · 2606.04139
A cryogenic gas target for high-intensity radioactive ion beam production at HIRFL-RIBLL
Abstract
A liquid-nitrogen-cooled cryogenic gas target system has been developed and installed for radioactive ion beam (RIB) production at the Radioactive Ion Beam Line in Lanzhou (RIBLL). Light-element gases ($\mathrm{H}_2$, $\mathrm{D}_2$, and $^4\mathrm{He}$) filled in the target cell were cooled to cryogenic temperatures, with the gas-cell outlet temperature typically monitored at 82--86 K during beam irradiation and operating pressures up to 1000 mbar. The system was used to produce $^{7}\mathrm{Be}$, $^{16}\mathrm{N}$, and $^{15}\mathrm{O}$ RIBs via the $^{1}\mathrm{H}(^{7}\mathrm{Li}, ^{7}\mathrm{Be})n$, $^{2}\mathrm{H}(^{15}\mathrm{N}, ^{16}\mathrm{N})p$, and $^{1}\mathrm{H}(^{15}\mathrm{N}, ^{15}\mathrm{O})n$ inverse kinematics reactions, yielding purities of 85\%, 99\%, and 95\%, with intensities of $1.02\times10^{6}$, $2.7\times10^{5}$, and $1.0\times10^{5}$ pps, respectively. A $^{93m}\mathrm{Mo}$ isomer beam was also produced via the $\mathrm{^4He(^{94}Zr,} 5n)^{93m}\mathrm{Mo}$ reaction, achieving an intensity of $5.38\times10^{3}$ pps and a purity of 20\% (which can be further improved to $\sim$50\% with offline time-of-flight gating). By delivering a broader range of high-intensity secondary RIBs, this setup establishes a robust platform at RIBLL for low- and medium-energy nuclear astrophysics and reaction studies.
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Xiao Fang, Shiwei Xu, Longhui Ru, Ruiqi Chen, Bingshui Gao, Song Guo, Jun Hu, Huiming Jia, Xinyue Li, Chengjian Lin, Enqiang Liu, Chengui Lu, Junbing Ma, Jun Su, Xiaodong Tang, Jiansong Wang, Shengquan Yan, Lei Yang, Ruojun Yang, Yanyun Yang, Gaolong Zhang, Liyong Zhang, Ningtao Zhang, Zhichao Zhang. 2026-06-02. A cryogenic gas target for high-intensity radioactive ion beam production at HIRFL-RIBLL. https://arxiv.org/abs/2606.04139
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