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Taking a look at the calibration of a CCD detector with a fiber-optic taper

机译:看一下带有光纤锥度的CCD检测器的校准

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摘要

At the Structural Biology Center beamline 19BM, located at the Advanced Photon Source, the operational characteristics of the equipment are routinely checked to ensure they are in proper working order. After performing a partial flat-field calibration for the ADSC Quantum 210r CCD detector, it was confirmed that the detector operates within specifications. However, as a secondary check it was decided to scan a single reflection across one-half of a detector module to validate the accuracy of the calibration. The intensities from this single reflection varied by more than 30% from the module center to the corner of the module. Redistribution of light within bent fibers of the fiber-optic taper was identified to be a source of this variation. The degree to which the diffraction intensities are corrected to account for characteristics of the fiber-optic tapers depends primarily upon the experimental strategy of data collection, approximations made by the data processing software during scaling, and crystal symmetry.
机译:在位于高级光子源的结构生物学中心光束线19BM上,将定期检查设备的运行特性,以确保其工作正常。在对ADSC Quantum 210r CCD检测器执行部分平场校准之后,可以确认该检测器在规格范围内工作。但是,作为第二项检查,决定在整个检测器模块的一半上扫描一次反射,以验证校准的准确性。从模块中心到模块的一角,单次反射的强度变化超过30%。光在光纤锥度的弯曲光纤内的重新分布被认为是这种变化的来源。校正衍射强度以说明光纤锥度特性的程度主要取决于数据收集的实验策略,在缩放过程中由数据处理软件得出的近似值和晶体对称性。

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