首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Combined FDTD-Monte Carlo analysis and a novel design for ZnO scintillator rods in polycarbonate membrane for X-ray imaging
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Combined FDTD-Monte Carlo analysis and a novel design for ZnO scintillator rods in polycarbonate membrane for X-ray imaging

机译:结合FDTD-Monte Carlo分析和聚碳酸酯膜中用于X射线成像的ZnO闪烁体棒的新颖设计

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摘要

A combination of Finite Difference Time Domain (FDTD) and Monte Carlo (MC) methods is proposed for simulation and analysis of ZnO microscintillators grown in polycarbonate membrane. A planar 10 keV X-ray source irradiating the detector is simulated by MC method, which provides the amount of absorbed X-ray energy in the assembly. The transport of generated UV scintillation light and its propagation in the detector was studied by the FDTD method. Detector responses to different probable scintillation sites and under different energies of X-ray source from 10 to 25 keV are reported. Finally, the tapered geometry for the scintillators is proposed, which shows enhanced spatial resolution in comparison to cylindrical geometry for imaging applications.
机译:提出了时域有限差分法(FDTD)和蒙特卡洛(MC)方法的组合,用于模拟和分析聚碳酸酯膜中生长的ZnO微闪烁体。通过MC方法模拟了照射到检测器的平面10 keV X射线源,该方法提供了组件中吸收的X射线能量。通过FDTD方法研究了产生的紫外闪烁光的传输及其在检测器中的传播。报告了探测器对不同的可能闪烁点以及在10至25 keV的X射线源的不同能量下的响应。最后,提出了用于闪烁体的锥形几何形状,与用于成像应用的圆柱形几何形状相比,它显示出更高的空间分辨率。

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