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A Monte Carlo simulation comparing hydrocarbons as stopping gases for position sensitive neutron detectors

机译:蒙特卡洛模拟比较位置敏感的中子探测器的碳氢化合物作为终止气体

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摘要

Various neutron detectors are being developed for the next generation user facilities, which incorporate new as well as existing approaches for the detection of thermal neutrons. Improvements in neutron detector efficiency, detector size and position resolution have occurred over the last three decades and further advances are expected in the next ten years. Since gas detectors are expected to continue in a key role for future thermal neutron experiments, it is advantageous to review some of the criteria for the choice of proton/triton stopping gases for gas-based detectors. Monte Carlo simulations, using the group of programs "Stopping and Range of Ions in Matter", have been run to determine key performance characteristics for neutron detectors which utilize the reaction ~3He(n,p)t. This paper will focus on investigating the use of three common hydrocarbons and CF_4 as stopping gases for thermal neutron detectors. A discussion of these gases will include their behavior in terms of proton and triton range, ion distribution and straggle.
机译:正在为下一代用户设施开发各种中子探测器,这些探测器结合了新的以及现有的热中子探测方法。在过去的三十年中,中子探测器的效率,探测器的尺寸和位置分辨率得到了改善,并且在未来十年中有望取得进一步的发展。由于气体探测器有望在未来的热中子实验中继续发挥关键作用,因此,审查一些基于气体探测器的质子/ pro子停止气体选择标准是有利的。已经使用程序组“物质中的离子的停顿和范围”进行了蒙特卡洛模拟,以确定利用〜3He(n,p)t反应的中子探测器的关键性能特征。本文将重点研究使用三种常见的碳氢化合物和CF_4作为热中子探测器的终止气体。对这些气体的讨论将包括它们在质子和tri子范围,离子分布和散布方面的行为。

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