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康奈尔高能同步辐射源使用单反射金刚石单色仪的侧向反射光束线。

Side-bounce beamlines using single-reflection diamond monochromators at Cornell High Energy Synchrotron Source.

作者信息

Stoupin Stanislav, Krawczyk Thomas, Sagan David, Temnykh Alexander, Smieska Louisa, Woll Arthur, Ruff Jacob, Lyndaker Aaron, Pauling Alan, Croom Brendan P, Trigg Edward B

机构信息

Cornell High Energy Synchrotron Source, Cornell University, Ithaca, New York, USA.

Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, Dayton, Ohio, USA.

出版信息

J Synchrotron Radiat. 2021 Mar 1;28(Pt 2):429-438. doi: 10.1107/S160057752100120X. Epub 2021 Feb 25.

Abstract

The design and implementation of new beamlines featuring side-bounce (single-reflection) diamond monochromators at Cornell High Energy Synchrotron Source (CHESS) are described. Undulator radiation is monochromated using an interchangeable set of diamond crystal plates reflecting radiation in the horizontal (synchrotron) plane, where each crystal plate is set to one of the low-index Bragg reflections (111, 220, 311 and 400) in either Bragg or Laue reflection geometries. At the nominal Bragg angle of 18° these reflections deliver monochromated X-rays with photon energies of 9.7, 15.9, 18.65 and 22.5 keV, respectively. An X-ray mirror downstream of the diamond monochromator is used for rejection of higher radiation harmonics and for initial focusing of the monochromated beam. The characteristics of the X-ray beam entering the experimental station were measured experimentally and compared with the results of simulations. A reasonable agreement is demonstrated. It is shown that the use of selected high-dislocation-density `mosaic' diamond single-crystal plates produced using the chemical vapor deposition method yields a few-fold enhancement in the flux density of the monochromated beam in comparison with that delivered by perfect crystals under the same conditions. At present, the Functional Materials Beamline at CHESS, which is used for time-resolved in situ characterization of soft materials during processing, has been outfitted with the described setup.

摘要

描述了康奈尔高能同步加速器光源(CHESS)上采用侧反射(单反射)金刚石单色仪的新光束线的设计与实现。利用一组可互换的金刚石晶体板对波荡器辐射进行单色化,这些晶体板在水平(同步加速器)平面内反射辐射,每个晶体板设置为布拉格或劳厄反射几何构型中的低指数布拉格反射(111、220、311和400)之一。在18°的标称布拉格角下,这些反射分别产生光子能量为9.7、15.9、18.65和22.5 keV的单色X射线。金刚石单色仪下游的X射线镜用于抑制更高的辐射谐波,并对单色光束进行初步聚焦。对进入实验站的X射线束的特性进行了实验测量,并与模拟结果进行了比较。结果表明二者吻合较好。结果表明,与在相同条件下完美晶体产生的单色光束相比,使用化学气相沉积法制备的选定的高位错密度“镶嵌”金刚石单晶板可使单色光束的通量密度提高几倍。目前,CHESS上用于在加工过程中对软材料进行时间分辨原位表征的功能材料光束线已配备了上述装置。

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