Design and theoretical investigation of a digital x-ray detector with large area and high spatial resolution

Jianbao Gui, Jinchuan Guo, Qin-lao Yang, Xin Liu, H. Niu
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Abstract

X-ray phase contrast imaging is a promising new technology today, but the requirements of a digital detector with large area, high spatial resolution and high sensitivity bring forward a large challenge to researchers. This paper is related to the design and theoretical investigation of an x-ray direct conversion digital detector based on mercuric iodide photoconductive layer with the latent charge image readout by photoinduced discharge (PID). Mercuric iodide has been verified having a good imaging performance (high sensitivity, low dark current, low voltage operation and good lag characteristics) compared with the other competitive materials (α-Se,PbI2,CdTe,CdZnTe) and can be easily deposited on large substrates in the manner of polycrystalline. By use of line scanning laser beam and parallel multi-electrode readout make the system have high spatial resolution and fast readout speed suitable for instant general radiography and even rapid sequence radiography.
大面积高空间分辨率数字x射线探测器的设计与理论研究
x射线相衬成像是当今一项很有前途的新技术,但对大面积、高空间分辨率和高灵敏度的数字探测器的要求给研究人员提出了很大的挑战。本文研究了基于碘化汞光导层的光致放电(PID)潜电荷图像读出x射线直接转换数字探测器的设计和理论研究。与其他竞争材料(α-Se,PbI2,CdTe,CdZnTe)相比,碘化汞具有良好的成像性能(高灵敏度,低暗电流,低电压工作和良好的滞后特性),并且可以很容易地以多晶的方式沉积在大型衬底上。采用线扫描激光束和平行多电极读出,使系统具有高空间分辨率和快速读出速度,适用于即时普通射线照相甚至快速序列射线照相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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