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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Design and characterization of zero magnetic field chambers for high efficiency neutron polarization transport
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Design and characterization of zero magnetic field chambers for high efficiency neutron polarization transport

机译:高效中子偏振输送零磁场室的设计与鉴定

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Several methods of polarized neutron scattering call for a zero magnetic field (ZF) region to reduce magnetic field integral aberrations while preserving the neutron polarization. Though the design for large angle neutron scattering has been presented in various places, the design characterization and tuning has not been discussed before. In this report, the tuning procedure will be discussed with both neutron polarization transport method and utilization of fluxgate magnetometers. As a tuning procedure, polarized neutrons are sensitive to any local field distortions along all trajectories within the beam, but the process is slow. With fluxgates, the entire beam region cannot be accessed simultaneously, but very fast and precise measurements can be made in accessible regions of interest. Consequently, we would like to benchmark the usage of fluxgates as a fast tuning probe compared with polarization measurements made with neutrons. Polarization transport results for tuned ZF chambers, up to 2.25 m in length, are presented.
机译:用于零磁场(ZF)区域的偏振中子散射呼叫的几种方法,以减少磁场积分像差,同时保持中子偏振。虽然在各个地方呈现了大角度中子散射的设计,但之前尚未讨论设计表征和调整。在本报告中,将用中子偏振传输方法和浮动磁力计的使用讨论调谐程序。作为调谐程序,偏振中子对梁内的所有轨迹的任何局部场畸变敏感,但过程慢。通过浮雕,不能同时访问整个光束区域,但是可以在感兴趣的可接近区域中进行非常快速和精确的测量。因此,与用中子制作的极化测量相比,我们希望将磁通盖的用法作为快速调谐探针。调谐ZF腔室的偏振传输结果,长度为2.25米。

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