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Energy resolution of xenon proportional counters: Monte Carlo simulation and experimental results

机译:氙比例计数器的能量分辨率:蒙特卡罗模拟和实验结果

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摘要

The gas multiplication factor M and energy resolution R of xenon gas cylindrical proportional counters are investigated experimentally and calculated theoretically using a Monte Carlo technique to simulate the growth of single-electron-initiated avalanches. A good agreement is found between calculated and experimental data. The experimental and the calculated results are presented as a function of the reduced voltage K and the reduced anode radius Na, where N is the number density and a the anode radius. The Monte Carlo results for the intrinsic energy resolution R/sub int/ are discussed in terms of the parameter f which characterizes the statistical fluctuations of the avalanche gains. The present calculations have revealed that there is an intrinsic dependence of f on the critical value S/sub c/ of the reduced electric field at the onset of multiplication. This has enabled the parameterization of f and of the intrinsic energy resolution R/sub int/ in terms of the reduced voltage K only and has explained why, for a given range of operating values for M, energy resolution in a cylindrical proportional counter is improved for thinner anode wires and lower pressures.
机译:实验研究了氙气圆柱比例计数器的气体倍增因子M和能量分辨率R,并使用蒙特卡洛技术模拟了单电子引发雪崩的生长,并从理论上计算了气体倍增因子M和能量分辨率R。在计算数据和实验数据之间找到了很好的一致性。实验和计算结果表示为降低的电压K和减小的阳极半径Na的函数,其中N为数密度和阳极半径。本征能量分辨率R / sub int /的蒙特卡罗结果以参数f进行讨论,该参数表征雪崩增益的统计波动。当前的计算表明,在乘法开始时,f取决于减小的电场的临界值S / sub c /。这样就可以仅通过降低的电压K来参数化f和本征能量分辨率R / sub int /的参数,并解释了为什么对于给定的M操作值范围,可以改善圆柱比例计数器中的能量分辨率用于更细的阳极丝和更低的压力。

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