首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The ~6LiF-silicon detector array developed for real-time neutron monitoring at white neutron beam at CSNS
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The ~6LiF-silicon detector array developed for real-time neutron monitoring at white neutron beam at CSNS

机译:〜6LiF硅探测器阵列,用于在CSNS处的白色中子束实时中子监测

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摘要

A white neutron source for nuclear data measurement has been built and put into operation on China Spallation Neutron Source (CSNS). We developed a beam monitor for real-time online monitoring of neutron flux on the white neutron source. The beam monitor work simultaneously with other nuclear data measurement detectors to provide neutron flux for data analysis. To minimize beam disturbance and reduce the background generated by the monitor, a structure in which neutron conversion layer and Si detectors are separated is employed: A (LiF)-Li-6 film with a mass thickness of 360 mu g/cm(2) was deposited on a 10 mu m aluminum foil and placed inside the beam line. Eight Si-detectors with a size of 20x20 mm(2) were placed around the film outside the beam to maximize the reception of secondary particles from the conversion layer and to avoid neutron beam irradiation. The simulation of the beam monitor (layout, counting rate, neutron disturbance, etc.), construction and online performance are described in the paper. Good online performance of the monitor was achieved during the CSNS white neutron source flux calibration experiment in March, 2018: The counting rate for the beam line operating at Phi 30 mm and Phi 60 mm beam pattern modes was normalized to 100 kW proton beam power, and the result is consistent with the simulation. The total uncertainty of the normalized counting rate is less than 1%. Moreover, the measurement of neutron flux in low energy region below 10 keV of the white neutron source by the monitor is discussed.
机译:已建立了一个用于核数据测量的白色中子源,并在中国散裂中子源(CSNS)上投入运行。我们开发了一种射束监测器,用于实时在线监测白色中子源上的中子通量。束监测器与其他核数据测量探测器同时工作,以提供中子通量用于数据分析。为了最大程度地减少束流干扰并减少监视器产生的背景,采用了中子转换层和Si探测器分离的结构:质量厚度为360μg / cm(2)的(LiF)-Li-6膜将其沉积在10μm的铝箔上并放置在光束线内。将八个尺寸为20x20 mm(2)的硅探测器放在电子束外部的薄膜周围,以最大程度地接收来自转换层的二次粒子,并避免中子束辐照。本文描述了射束监测器的仿真(布局,计数率,中子干扰等),构造和在线性能。在2018年3月的CSNS白中子源通量校准实验中,该监测仪获得了良好的在线性能:以Phi 30 mm和Phi 60 mm束模式运行的束线的计数率归一化为100 kW质子束功率,结果与仿真结果吻合。归一化计数率的总不确定度小于1%。此外,还讨论了通过监视器对白色中子源低于10 keV的低能区域中子通量的测量。

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