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Monte Carlo simulation of xenon filled cylindrical proportional counters

机译:氙气填充圆柱比例计数器的蒙特卡洛模拟

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Single electron avalanche processes in a xenon filled cylindrical proportional counter have been simulated using a detailed Monte Carlo technique. The avalanche gain A and its average value M as well as its frequency distribution and spread parameter b have been calculated for xenon at atmospheric pressure, for a 2.55 cm cathode radius and 12.5 and 50 /spl mu/m anode radii. A discussion is made of the results obtained for M as a function of the anode voltage in terms of prevailing theories. It is found that Monte Carlo calculated M values are markedly lower than those obtained analytically using the first Townsend ionization coefficient calculated under a uniform field. This puts into evidence the relevance of the non-equilibrium nature of avalanche processes.
机译:使用详细的蒙特卡洛技术已经模拟了氙气填充的圆柱比例计数器中的单电子雪崩过程。对于大气压下的氙,对于阴极半径为2.55 cm的阳极,阳极半径为12.5和50 / spl mu / m,已经计算了雪崩增益A及其平均值M以及频率分布和扩展参数b。根据流行的理论,对作为阳极电压的函数的M获得的结果进行了讨论。发现,蒙特卡洛计算的M值明显低于在均匀电场下使用第一个Townsend电离系数解析得到的M值。这证明了雪崩过程的非平衡性质的相关性。

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