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Detector Dead Time Determination and Optimal Counting Rate for a Detector Near a Spallation Source or a Subcritical Multiplying System

机译:检测器死区时间确定和偏移源附近检测器的最佳计数率或亚临界乘法系统

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摘要

The operation of accelerator-driven systems or spallation sources requires the monitoring of intense neutron fluxes, which may be billions-fold more intense than the fluxes obtained with usual radioactive sources. If a neutron detector is placed near a very intense source, it can become saturated because of detector dead time. On the contrary, if it is placed far away from the source, it will lose counting statistics. For this reason, there must exist an optimal position for placing the detector. The optimal position is defined as the one with the minimal relative uncertainty in the counting rate. In this work, we review the techniques to determine the detector dead time that can be applied with an accelerator-driven subcritical system or a spallation source. For the case of a spallation source, counting rates do not follow Poisson's statistics because of the multiplicity of the number of neutrons emitted by incident proton. It has been found a simple expression that relates the optimal counting rate with the source multiplicity and the uncertainty in the determination of the dead time.
机译:加速器驱动的系统或椎间源源的操作需要监测强中子丝量,这可能比使用通常的放射源获得的助熔剂更强烈的数十亿倍。如果中子探测器放置在非常强烈的源附近,则由于检测器死区时间可能变得饱和。相反,如果它远离源,它将失去计数统计数据。因此,必须存在用于将探测器放置的最佳位置。最佳位置被定义为具有计数率最小的相对不确定性的位置。在这项工作中,我们审查了确定可以用加速器驱动的子临界系统或剥离源应用的检测器死区时间的技术。对于介绍来源的情况,由于事故质子排放的中子数量的多数,计数率不关注泊松统计。已经发现了一种简单的表达式,与源多重和确定死区时间的不确定性相关的简单表达式。

著录项

  • 作者

    V. Bécares; J. Blázquez;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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