首页> 外文会议>IEEE Nuclear Science Symposium >Single Channel Beta-Gamma Coincidence Detection of Radioactive Xenon Using Digital Pulse Shape Analysis of Phoswich Detector Signals
【24h】

Single Channel Beta-Gamma Coincidence Detection of Radioactive Xenon Using Digital Pulse Shape Analysis of Phoswich Detector Signals

机译:单通道Beta-Gamma巧合检测放射性氙气的数字脉冲形状分析来分析镜头探测器信号

获取原文

摘要

Monitoring radioactive xenon in the atmosphere is one of several methods used to detect nuclear weapons testing. To increase sensitivity, monitoring stations use a complex system of separate beta and gamma detectors to detect beta-gamma coincidences from the Xe isotopes of interest, which is effective, but requires such careful gain matching and calibration that it is difficult to operate in the field. To simplify the system, a phoswich detector has been designed, consisting of optically coupled plastic and CsI scintillators to absorb beta particles and gamma rays, respectively. Digital pulse shape analysis of the detector signal is used to determine if radiation interacted in either or both parts of the detector and to measure the energy deposited in each part, thus using only a single channel of readout electronics to detect beta-gamma coincidences and to measure both energies. Experiments with a prototype detector show that the technique can clearly separate event types, does not degrade the energy resolution, and has an error rate for detecting coincidences of less than 0.1%. Monte Carlo simulations of radiation transport and light collection in the proposed detector were performed to obtain optimum values for its design parameters and an estimate of the coincidence detection efficiency (82-92%) and the background rejection rate (better than 99%).
机译:在大气中监测放射性氙是用于检测核武器测试的几种方法之一。为了提高灵敏度,监测站使用单独的β和伽马探测器的复杂系统来检测来自感兴趣的XE同位素的β-gamma巧合,这是有效的,但需要如此谨慎的增益匹配和校准,即难以在该领域运行。为了简化系统,设计了一种伪装检测器,由光学偶联的塑料和CSI闪烁体组成,分别吸收β颗粒和γ射线。检测器信号的数字脉冲形状分析用于确定辐射是否在检测器的任一部分或两个部分中相互作用,并测量每个部分中沉积的能量,因此仅使用单个读出电子器件来检测β-gamma巧合和衡量能量。使用原型检测器的实验表明,该技术可以清楚地分离事件类型,不会降低能量分辨率,并且检测恰定性小于0.1%的错误率。进行蒙特卡罗模拟所提出的检测器中的辐射运输和光收集,以获得其设计参数的最佳值,并估计重合检测效率(82-92%)和背景抑制率(优于99%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号