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An analytical comparison of gas gain in spherical, cylindrical and hemispherical low-pressure proportional counters intended for use in experimental microdosimetry

机译:打算用于实验微剂量法的球形,圆柱形和半球形低压比例计数器中气体增益的分析比较

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Traditionally experimental microdosimetry has employed low pressure single cavity spherical Tissue Equivalent Proportional Counters (TEPCs). Multi-Element Tissue Equivalent Proportional Counters (METEPCs) with numerous cylindrical cavities have been constructed in order to increase sensitivity per unit volume; however existing METEPC designs are prohibitively complex and sensitive to motion and audible noise. This work proposes a novel hemispherical element with a wire-less anode ball as a solution to these issues. The gas gain characteristics of this hemispherical METEPC element were analyzed first for a single hemispherical TEPC to evaluate performance relative to current cylindrical and spherical counter designs that have been demonstrated experimentally to perform very well. This gain analysis evaluated relative avalanche size and the uniformity in maximum gain for electrons originating throughout the gas cavities of each of the three counters. Radial gas gain distributions for each counter were determined using both theoretical potential distributions as well as analytical equipotential distributions generated with ANSYS Maxwell CV. 14.0) to solve the Townsend equation. It was found that the hemispherical counter exhibits completely uniform gas gain for electrons approaching the anode from all directions and its avalanche region occupies only 3.5×10~(-3)% of the entire gas cavity volume, whereas in the cylindrical and spherical counters the avalanche occupies 0.6% and 0.12% of the total respective gas cavity volumes. These analytical gas gain results are promising, suggesting that the hemisphere should exhibit uniform signal amplification throughout the gas cavity and if the recommended follow-up experimental work demonstrates the hemispherical counter works as anticipated it will be ready to be incorporated into an METEPC design.
机译:传统上,实验微剂量法使用低压单腔球形组织等效当量计数器(TEPC)。为了增加单位体积的灵敏度,已经构造了具有多个圆柱孔的多元素组织当量比例计数器(METEPC)。然而,现有的METEPC设计非常复杂,并且对运动和听觉噪声敏感。这项工作提出了一种带有无线阳极球的新型半球形元件,以解决这些问题。首先针对单个半球形TEPC分析此半球形METEPC元件的气体增益特性,以评估相对于当前圆柱和球形计数器设计的性能,这些设计已通过实验证明性能良好。该增益分析评估了相对雪崩的大小和三个计数器中每个计数器的整个气体腔中产生的电子的最大增益均匀性。使用ANSYS Maxwell CV生成的理论电势分布和分析等电势分布确定每个计数器的径向气体增益分布。 14.0)求解Townsend方程。结果发现,半球形计数器在各个方向都接近于阳极的电子表现出完全均匀的气体增益,其雪崩区仅占整个气腔体积的3.5×10〜(-3)%,而在圆柱形和球形计数器中,雪崩分别占总气腔体积的0.6%和0.12%。这些分析性的气体增益结果很有希望,表明半球在整个气腔中均应显示出均匀的信号放大,并且如果建议的后续实验工作证明了半球反作用如预期的那样,将可以将其纳入METEPC设计中。

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