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EIGER detector: application in macromolecular crystallography

机译:艾格尔峰检测器:在高分子中的应用晶体学

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The development of single‐photon‐counting detectors, such as the PILATUS, has been a major recent breakthrough in macromolecular crystallography, enabling noise‐free detection and novel data‐acquisition modes. The new EIGER detector features a pixel size of 75 × 75?μm, frame rates of up to 3000?Hz and a dead time as low as 3.8?μs. An EIGER 1M and EIGER 16M were tested on Swiss Light Source beamlines X10SA and X06SA for their application in macromolecular crystallography. The combination of fast frame rates and a very short dead time allows high‐quality data acquisition in a shorter time. The ultrafine ?‐slicing data‐collection method is introduced and validated and its application in finding the optimal rotation angle, a suitable rotation speed and a sufficient X‐ray dose are presented. An improvement of the data quality up to slicing at one tenth of the mosaicity has been observed, which is much finer than expected based on previous findings. The influence of key data‐collection parameters on data quality is discussed.
机译:单光子计数应承担应承担的的发展探测器,如皮拉图斯山,一直是主要的最近突破大分子晶体学,使噪音量免费检测和新颖的数据采集模式。探测器有一个75×75像素的大小?帧率高达3000 ?低至3.8 ?μs。瑞士光源测试beamlines X10SA和X06SA为他们在高分子中的应用晶体学。率和很短的死时间允许在更短的时间内高质量数据采集。超细?还是切片数据的收集方法介绍和验证及其应用找到最佳的旋转角度,一个合适的旋转速度和一个足够的X射线剂量提出了。在十分之一的mosaicity一直切片基于观察,比预期的要细先前的研究结果。数据收集参数对数据质量进行了讨论。

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