论文标题
激光辅助高能质子脉冲提取,用于可行性研究SNS的共同分离的MUON源
Laser-assisted high-energy proton pulse extraction for feasibility study of co-located muon source at the SNS
论文作者
论文摘要
我们已经通过实验证明了第一个非侵入性1-GEV质子束提取,用于生成具有针对MUON自旋弛豫/旋转/共振(MUSR)应用的时间结构的MUON的产生。质子脉冲是根据1 GEV氢离子(H-)束在散布中子源(SNS)加速剂的高能束传输中的激光中和提取的。提取的质子束的最大通量仅占用于中子产生的总质子束的0.2%,与其他共同置换的哑光和中子设施的20%降低相差明显差异,因此所提出的方法将对SNS操作产生可忽略的影响。本文介绍了纤维/固态混合激光系统的开发,该系统具有脉冲结构和输出功率的高灵活性,H-Beam的激光中和以及H0 Beam与现有的SNS加速器束系的初步实验,将H0转换为SNS linac tlialac tlialac fust的H0向质子的转换以及测量结果30 ns/50 khz poteron pots prots。该系统最终证明了基于激光的质子束提取的可行性,可以在SNS上为世界领先的MUSR设施供电。
We have experimentally demonstrated the first non-intrusive 1-GeV proton beam extraction for the generation of muons with a temporal structure optimized for Muon Spin Relaxation/Rotation/Resonance (MuSR) applications. The proton pulses are extracted based on the laser neutralization of 1 GeV hydrogen ion (H-) beam in the high energy beam transport of the Spallation Neutron Source (SNS) accelerator. The maximum flux of the extracted proton beam accounts for only 0.2% of the total proton beam used for neutron production, a marked difference from the 20% reduction at other co-located muon and neutron facilities, and thus the proposed method will result in negligible impact on the SNS operation. This paper describes the development of a fiber/solid-state hybrid laser system that has high flexibility of pulse structure and output power, initial experiments on laser neutralization of H- beam and separation of H0 beam from the existing SNS accelerator beam line, conversion of H0 to proton at the SNS linac dump, and measurement results of 30 ns/50 kHz proton pulses. This system conclusively demonstrates the feasibility of laser-based proton beam extraction to power a world-leading MuSR facility at the SNS.