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The Research on Neutron Dose Equivalent Meter for Pulse Neutron Radiation Field

机译:脉冲中子辐射场中子剂量等效仪研究

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This paper introduces a new type of real-time neutron dosimeter that can reduce the counting loss of a general neutron dosimeter in a pulsed neutron field or strong neutron field, such as in the area of high-energy physics equipment, accelerator, and light source. In a general neutron dosimeter, signal is transmitted from the BF3 proportional counter tube, via the charge-sensitive pre-amplifier, the main amplifier, and the discriminator that filtering γ background and noise, and finally to the counter, and the counting will be converted to Sv or Sv/h. Based on general neutron dosimeter, by using the proportional relationship of the electric charge and the energy loss of the particle in the tube, when several neutrons are recorded simultaneously, the amplitude of the output impulse rises. Several Regions of Interest (ROIs) can be set in the pulse amplitude spectrum measured by multi-channel pulse amplitude analyzer (MCA) for one-neutron pulse, two-neutron-overlapping pulse and three-neutron-overlapping pulse. By individually integrating the count in these ROIs and multiplying with proper coefficient, the actual neutron influence can be obtained. The influence represents the neutron dose equivalent. The pulse amplitude spectrum obtained by multi-channel analyzer (MCA) in a pulsed neutron field shows that the peaks in the spectrum correspond to the energy of one neutron reaction, and two or three neutrons reacting simultaneously. The ROIs are set according to corresponding peaks. The experiment shows that the method can reduce the counting loss of a neutron dosimeter in a strong neutron field.
机译:本文介绍了一种新型的实时中子剂量计,可以减少脉冲中子田或强中子场中的一般中子剂量计的计数损失,例如在高能物理设备,加速器和光源区域中。在一般的中子剂量计中,信号通过电荷敏感的预放大器,主放大器和过滤γ背景和噪声的鉴别器来从BF3比例计数器管传输,最后到计数器,并且计数将是转换为SV或SV / h。基于一般中子剂量计,通过使用管中颗粒的比例关系,当同时记录几个中子时,输出脉冲的幅度升高。可以在由多通道脉冲幅度分析器(MCA)测量的脉冲幅度谱中,以进行一个中子脉冲,两个中子 - 重叠脉冲和三中子重叠脉冲测量的若干人口区域(ROI)。通过单独集中在这些ROI中的计数并乘以适当的系数,可以获得实际的中子影响。影响代表中子剂量当量。脉冲中子场中的多通道分析器(MCA)获得的脉冲幅度谱表明,光谱中的峰值对应于一个中子反应的能量,以及两三个中子同时反应。 ROI根据相应的峰值设置。实验表明,该方法可以减少在强中子场中中子剂量计的计数损失。

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