论文标题

部分可观测时空混沌系统的无模型预测

Design of a $μ$SR spectrometer with ultrahigh arrays at China Spallation Neutron Source

论文作者

Dong, Jingyu, Pan, Ziwen, Yang, Tianyi, Lin, Zebin, Wang, Zhe, He, Zhengyang, Chen, Zhe, Jing, Hantao, Tang, Jingyu, Liu, Jiandang, Zhang, Hongjun, Ye, Bangjiao

论文摘要

已经提出了一种新的MUON来源来进行中国散布中子源(CSN)的MUON自旋旋转/松弛/共振($ $ $ SR)测量。只有1 Hz的CSNS质子束(总共25 Hz)将用于MUON产生。为了更好地利用每个脉冲中的MUON,正在设计带有数千个检测器通道的超高阵列$ $ $ $ SR光谱仪(UHAM)。由于探测器的粒度如此高,在设计中应仔细考虑在强纵向场中由粒子散射或正上音的螺旋运动产生的多个计数事件。基于两种类型的角度取向(平行排列和指向排列)和三种光谱仪几何形状(气缸,锥体和球体)对六个不同的结构进行了建模和模拟。提出了一个质量因素$ Q $,以通过整合其对整体不对称性,计数率和多个计数百分比的影响来评估这些结构的性能。根据模拟,指向样品的检测器的圆锥结构在零场和纵向场中均具有最高的$ q $。结果还表明,各种结构不能在强度超过2 t的强纵向场下进行操作。$μ$ SR光谱仪的完整模拟可以为在即将升级的CSN升级中构建UHH的构建提供良好的指导。

A new muon source has been proposed to conduct muon spin rotation/relaxation/resonance ($μ$SR) measurements at China Spallation Neutron Source (CSNS). Only 1 Hz of the CSNS proton beams (25 Hz in total) will be allocated for muon production. To make better use of muons in every pulse, an ultrahigh-array $μ$SR spectrometer (UHAM) with thousands of detector channels is under design. Due to such a high granularity of detectors, multiple counting events generated from particle scattering or spiral motions of positrons in a strong longitudinal field should be carefully considered in the design. Six different structures were modeled and simulated based on two types of angular orientations (parallel arrangement and pointing arrangement) and three kinds of spectrometer geometries (cylinder, cone and sphere). A quality factor, $Q$, was proposed to evaluate the performance of these structures by integrating their impacts on the overall asymmetry, the counting rate and the percentage of multiple counts. According to the simulation, the conical structure with detectors pointing to the sample has the highest $Q$ in both zero field and longitudinal field. The results also show that all kinds of structures cannot be operated under strong longitudinal fields with a strength over 2 T. The full simulation of a $μ$SR spectrometer can provide good guidance for the construction of the UHAM in the upcoming upgrade of CSNS.

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