Miyajima Satoshi, Imagawa Kotaro, Matsumoto Masao
Graduate School of Medicine, Course of Health Sciences, Osaka University, Yamadaoka, Suita, Japan.
Med Phys. 2002 Jul;29(7):1421-9. doi: 10.1118/1.1485975.
A method to utilize CdZnTe (CZT) detectors in diagnostic x-ray spectroscopy is described in this article. Spectral distortion due to transmission of primary x rays, the escape of cadmium- and tellurium-K fluorescent x rays, and tailing was severe in measured x-ray spectra. Therefore, correction for the distortion was performed with the stripping method using response functions. The response functions were calculated with the Monte Carlo method. The Hecht equation was employed to approximate the effects of carrier trapping in the calculations. The parameters in the Hecht equation, the mean-free path (lambda) of electrons and holes, were determined such that the tailing in calculated response functions fit that in measured gamma-ray spectra. Corrected x-ray spectra agreed well with the reference spectra measured with an HPGe detector. The results indicate that CZT detectors are suitable for diagnostic x-ray spectroscopy with appropriate corrections.
本文描述了一种在诊断X射线光谱学中使用碲锌镉(CZT)探测器的方法。在测量的X射线光谱中,由于初级X射线的透射、镉和碲K荧光X射线的逸出以及拖尾导致的光谱畸变很严重。因此,使用响应函数通过剥离法对畸变进行校正。响应函数用蒙特卡罗方法计算。在计算中采用赫克特方程来近似载流子俘获的影响。确定赫克特方程中的参数,即电子和空穴的平均自由程(λ),使得计算出的响应函数中的拖尾与测量的γ射线光谱中的拖尾相匹配。校正后的X射线光谱与用高纯锗探测器测量的参考光谱吻合良好。结果表明,CZT探测器经过适当校正后适用于诊断X射线光谱学。