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A Monte Carlo simulation of the microdosimetric response for thick gas electron multiplier

机译:厚气体电子倍增器的微剂量响应的蒙特卡罗模拟

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摘要

The neutron microdosimetric responses of the thick gas electron multiplier (THGEM) detector were simulated. The THGEM is a promising device for microdosimetry, particularly for measuring the dose spectra of intense radiation fields and for collecting two-dimensional microdosimetric distributions. To investigate the response of the prototype THGEM microdosimetric detector, a simulation was developed using the Geant4 Monte Carlo code. The simulation calculates the deposited energy in the detector sensitive volume for an incident neutron beam. Both neutron energy and angular responses were computed for various neutron beam conditions. The energy response was compared with the reported experimental microdosimetric spectra as well as the evaluated fluence-to-kerma conversion coefficients. The effects of using non-tissue equivalent materials were also investigated by comparing the THGEM detector response with the response of an ideal detector in identical neutron field conditions. The result of the angular response simulations revealed severe angular dependencies for neutron energies above 100 keV. The simulation of a modified detector design gave an angular response pattern close to the ideal case, showing a fluctuation of less than 10% over the entire angular range.
机译:模拟了厚气体电子倍增器(THGEM)检测器的中子微剂量响应。 THGEM是用于微剂量学的有前途的设备,特别是用于测量强辐射场的剂量谱以及收集二维微剂量分布的设备。为了研究原型THGEM微剂量检测器的响应,使用Geant4蒙特卡洛代码进行了仿真。该模拟计算入射中子束在探测器敏感体积中的沉积能量。计算了各种中子束条件下的中子能量和角响应。将能量响应与已报道的实验微剂量光谱以及所评估的能量密度-比释动能转换系数进行了比较。通过比较THGEM探测器的响应与理想探测器在相同中子场条件下的响应,还研究了使用非组织等效材料的效果。角响应模拟的结果表明,对于高于100 keV的中子能量,角依赖性很大。修改后的检测器设计的仿真给出了接近理想情况的角度响应模式,显示在整个角度范围内的波动小于10%。

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