反常散射和k -荧光重吸收对硒性能的影响

A. Sultana, A. Reznik, K. Karim, J. Rowlands
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引用次数: 1

摘要

在数字成像系统的直接转换平板探测器中,硒(Se)已成功地用作光导体,将入射的x射线转换为电子电荷。我们研究了k荧光重吸收和反常散射对蛋白质晶体学探测器中硒性能的影响。反常散射是晶体学中相位计算的一种方法。对于反常散射的发生,使入射x射线能量等于Se的k边能量。我们的研究表明,在K边能量处发生了显著的K荧光逃逸和重吸收,从而降低了探测器的空间分辨率、灵敏度和信噪比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of anomalous scattering and K-fluroscence reabsorption on the performance of selenium
Selenium (Se) has been successfully employed as a photoconductor to convert incident X-rays to electronic charges in direct conversion flat panel detectors for digital imaging systems. We have studied the effect of K-fluorescence reabsorption coupled with anomalous scattering on the performance of Se in protein crystallography detectors. Anomalous scattering is used as a method of phase calculation in crystallography. For occurrence of anomalous scattering, incident X-ray energy is made equal to the K-edge energy of Se. Our study indicates that significant K--fluorescence escape and reabsorption occurs at K-edge energy which degrades spatial resolution, sensitivity, and signal-to-noise ratio of the detector.
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