Blanchet Clement E, Hermes Christoph, Svergun Dmitri I, Fiedler Stefan
European Molecular Biology Laboratory, Hamburg Outstation c/o DESY, Notkestrasse 85, 22603 Hamburg, Germany.
J Synchrotron Radiat. 2015 Mar;22(2):461-4. doi: 10.1107/S160057751402829X. Epub 2015 Feb 4.
A small active in-vacuum beamstop has been developed to monitor the flux of intense third-generation synchrotron X-ray beams protecting the downstream detector from the direct beam. Standard active beamstops, where a built-in diode directly absorbs the beam, have limitations in size and lifetime. In the present design, a silicon PIN diode detects the photons back-scattered from a cavity in the beamstop. This approach drastically reduces the radiation dose on the diode and thus increases its lifetime. The beamstop with a diameter of 2 mm has been fabricated to meet the requirements for the P12 bioSAXS beamline of EMBL Hamburg at PETRA III (DESY). The beamstop is in regular user operation at the beamline and displays a good response over the range of energies tested (6-20 keV). Further miniaturization of the diode is easily possible as its size is not limited by the PIN diode used.
已开发出一种小型有源真空束流阻挡器,用于监测第三代强同步加速器X射线束的通量,保护下游探测器免受直射束流的影响。标准的有源束流阻挡器通过内置二极管直接吸收束流,在尺寸和寿命方面存在局限性。在当前设计中,一个硅PIN二极管检测从束流阻挡器中的腔体反向散射的光子。这种方法极大地降低了二极管上的辐射剂量,从而延长了其寿命。已制造出直径为2 mm的束流阻挡器,以满足位于PETRA III(德国电子同步加速器研究所)的欧洲分子生物学实验室汉堡分部P12生物小角X射线散射光束线的要求。该束流阻挡器在光束线处于常规用户操作状态,并且在测试的能量范围内(6 - 20 keV)显示出良好的响应。由于二极管的尺寸不受所用PIN二极管的限制,因此很容易进一步实现其小型化。