首页> 外文期刊>Journal of synchrotron radiation >Developments in optics and performance at BL13-XALOC, the macromolecular crystallography beamline at the Alba Synchrotron
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Developments in optics and performance at BL13-XALOC, the macromolecular crystallography beamline at the Alba Synchrotron

机译:Alba Synchrotron的大分子晶体束线BL13-XALOC的光学和性能方面的发展

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BL13-XALOC is currently the only macromolecular crystallography beamline at the 3 GeV ALBA synchrotron near Barcelona, Spain. The optics design is based on an in-vacuum undulator, a Si(111) channel-cut crystal monochromator and a pair of KB mirrors. It allows three main operation modes: a focused configuration, where both mirrors can focus the beam at the sample position to 52 μm × 5.5 μm FWHM(H× V); a defocused configuration that can match the size of the beam to the dimensions of the crystals or to focus the beam at the detector; and an unfocused configuration, where one or both mirrors are removed from the photon beam path. To achieve a uniform defocused beam, the slope errors of the mirrors were reduced down to 55 nrad RMS by employing a novel method that has been developed at the ALBA high-accuracy metrology laboratory. Thorough commissioning with X-ray beam and user operation has demonstrated an excellent energy and spatial stability of the beamline. The endstation includes a high-accuracy single-axis diffractometer, a removable minikappa stage, an automated sample-mounting robot and a photon-counting detector that allows shutterless operation. The positioning tables of the diffractometer and the detector are based on a novel and highly stable design. This equipment, together with the operation flexibility of the beamline, allows a large variety of types of crystals to be tackled, from medium-sized crystals with large unit-cell parameters to microcrystals. Several examples of data collections measured during beamline commissioning are described. The beamline started user operation on 18 July 2012.
机译:BL13-XALOC是目前在西班牙巴塞罗那附近的3 GeV ALBA同步加速器上唯一的大分子结晶学线。光学设计基于真空内波荡器,Si(111)通道切割晶体单色仪和一对KB反射镜。它允许三种主要操作模式:聚焦配置,两个反射镜都可以将光束在样品位置聚焦到52μm×5.5μmFWHM(H×V);一种散焦配置,可以使光束的大小与晶体的尺寸匹配或将光束聚焦在检测器上;非聚焦配置,其中一个或两个反射镜从光子束路径中移出。为了获得均匀的散焦光束,通过使用ALBA高精度计量实验室开发的新方法,将反射镜的倾斜度降低至55 nrad RMS。 X射线束的全面调试和用户操作证明了束线具有出色的能量和空间稳定性。该终端站包括一个高精度单轴衍射仪,一个可移动的minikappa载物台,一个自动样品安装机器人以及一个允许无快门操作的光子计数检测器。衍射仪和检测器的定位台基于新颖且高度稳定的设计。该设备与光束线的操作灵活性一起,可以处理各种类型的晶体,从具有大晶胞参数的中型晶体到微晶。描述了在光束线调试期间测量的数据收集的几个示例。 Beamline于2012年7月18日开始用户操作。

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