首页> 外文期刊>Journal of Applied Crystallography >A LARGE-FORMAT HIGH-RESOLUTION AREA X-RAY DETECTOR BASED ON A FIBER-OPTICALLY BONDED CHARGE-COUPLED DEVICE (CCD)
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A LARGE-FORMAT HIGH-RESOLUTION AREA X-RAY DETECTOR BASED ON A FIBER-OPTICALLY BONDED CHARGE-COUPLED DEVICE (CCD)

机译:基于光纤键合电荷耦合器件(CCD)的大尺寸高分辨率X射线检测器

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摘要

An efficient two-dimensional X-ray detector based on direct imaging of an X-ray-sensitive phosphor with a high-resolution (1024 x 1024) charge-coupled device (CCD) array has been constructed and characterized. High detective quantum efficiency is obtained without an intensification stage through direct coupling of the phosphor to the CCD with a fiber-optic taper. The CCD is read out directly into computer memory, permitting X-ray images to be evaluated immediately after exposure without the need for a time-consuming scanning operation. The device has a large dynamic range, excellent spatial resolution and low noise characteristics, making it suitable both for macromolecular crystallography and for recording the weak diffuse signals encountered in small-angle diffraction experiments. Analysis of crystallography data taken at the Cornell High Energy Synchrotron Source gave R(sym) values equal or superior to those of other recording media for several protein and virus crystals. [References: 28]
机译:基于具有高分辨率(1024 x 1024)电荷耦合器件(CCD)阵列的X射线敏感磷光体的直接成像,已构建并表征了一种高效的二维X射线检测器。通过荧光粉与光纤锥直接耦合到CCD,无需增强阶段即可获得高检测量子效率。 CCD被直接读出到计算机存储器中,从而可以在曝光后立即评估X射线图像,而无需耗时的扫描操作。该器件具有大的动态范围,出色的空间分辨率和低噪声特性,使其既适用于大分子晶体学又适用于记录在小角度衍射实验中遇到的微弱扩散信号。康奈尔高能同步加速器源的晶体学数据分析得出,对于几种蛋白质和病毒晶体,R(sym)值等于或优于其他记录介质。 [参考:28]

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