用于RHIC和EIC的极化3he++离子源

M. Musgrave, R. Milner, G. Atoian, E. Beebe, S. Kondrashev, A. Pikin, D. Raparia, J. Ritter, A. Zelenski, J. Maxwell
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引用次数: 3

摘要

在RHIC中加速极化$^3$He离子束的能力将为新的高能核子结构QCD研究提供有效的极化中子束。这一进展将对电子离子对撞机(EIC)的未来计划特别有益,它可以使用极化的$^3$He离子束来探测中子的自旋结构。提出的极化$^3$He离子源是基于目前在布鲁克海文国家实验室(BNL)运行的电子束离子源(EBIS)。$^3$He气体将通过亚稳态交换光泵浦(MEOP)在EBIS螺螺管的5t场内极化,然后脉冲进入EBIS真空和漂移管系统,在那里$^3$He将被10安培的电子束电离。极化$^3$He离子源的目标是在70%极化下实现$2.5 \乘以10^{11}$ $^3$He$^{++}$/脉冲。目前,BNL正在对EBIS进行升级。EBIS产生极化$^{3}$He$^{++}$的能力正在通过BNL和MIT之间的合作开发。
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Polarized 3He++ Ion Source for RHIC and an EIC
The capability of accelerating a polarized $^3$He ion beam in RHIC would demonstrate an effective polarized neutron beam for the study of new high-energy QCD studies of nucleon structure. This development would be particularly beneficial for the future plans of an Electron Ion Collider (EIC), which could use a polarized $^3$He ion beam to probe the spin structure of the neutron. The proposed polarized $^3$He ion source is based on the Electron Beam Ion Source (EBIS) currently in operation at Brookhaven National Laboratory (BNL). $^3$He gas would be polarized within the 5 T field of the EBIS solenoid via Metastability Exchange Optical Pumping (MEOP) and then pulsed into the EBIS vacuum and drift tube system where the $^3$He will be ionized by the 10 Amp electron beam. The goal of the polarized $^3$He ion source is to achieve $2.5 \times 10^{11}$ $^3$He$^{++}$/pulse at 70\% polarization. An upgrade of the EBIS is currently underway at BNL. The EBIS capability to produce polarized $^{3}$He$^{++}$ is being developed through a collaboration between BNL and MIT.
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