Šolc Jaroslav, Jakůbek Jan, Marek Lukáš, Oancea Cristina, Pivec Jiří, Šmoldasová Jana, Tesař Jiří, Vykydal Zdeněk
Czech Metrology Institute, Okruzni 31, 638 00 Brno, Czech Republic.
ADVACAM, U Pergamenky 12, 170 00 Prague 7, Czech Republic.
Phys Med. 2022 Sep;101:79-86. doi: 10.1016/j.ejmp.2022.08.002. Epub 2022 Aug 16.
The track structure of the signal measured by the semiconductor pixel detector Timepix3 was modelled in the Monte Carlo MCNP® code. A detailed model at the pixel-level (256 × 256 pixels, 55 × 55 µm pixel size) was developed and used to generate and store clusters of adjacent hit pixels observed in the measured data because of particle energy deposition path, charge sharing, and drift processes. An analytical model of charge sharing effect and the detector energy resolution was applied to the simulated data. The method will help the user sort the measured clusters and distinguish radiation components of mixed fields by determining the response of Timepix3 detector to particular particle types, energies, and incidence angles that cannot be measured separately.
由半导体像素探测器Timepix3测量的信号的径迹结构在蒙特卡罗MCNP®代码中进行了建模。开发了一个像素级的详细模型(256×256像素,像素尺寸为55×55微米),并用于生成和存储由于粒子能量沉积路径、电荷共享和漂移过程而在测量数据中观察到的相邻命中像素的簇。将电荷共享效应和探测器能量分辨率的解析模型应用于模拟数据。该方法将帮助用户通过确定Timepix3探测器对无法单独测量的特定粒子类型、能量和入射角的响应来对测量的簇进行分类,并区分混合场的辐射成分。