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Cooled silicon crystal monochromator test results

机译:冷却硅晶体单色仪测试结果

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High energy insertion devices, used as x-ray monochromators on synchrotron storage rings, require high performance cooling of the primary optic. Monocrystalline materials, such as silicon, inherently provide crystal lattice properties suitable for x-ray diffraction. Silicon, provides excellent thermal and structural properties as well. Free electron lasers also require high performance heat exchanger technology for mirrors. A highly efficient approach to cooling, called `pin post cell,' was developed and fully validated in silicon. However, an additional criteria is imposed on the optic when used as a diffractive crystal. The crystalline structure of the material must not be altered during any step of fabrication. A test program has been completed which evaluated the existing fabrication technology for crystal lattice distortion. X-ray diffraction test results are presented. Currently, we are fabricating an actively cooled crystal that will undergo dynamic testing on the CHESS F2 beamline later this summer.
机译:用作同步储存环上的X射线单色器的高能插入装置需要高性能冷却初级光学器件。单晶材料,如硅,固有地提供适合于X射线衍射的晶格性。硅,也提供出色的热和结构性。自由电子激光器还需要高性能热交换器技术镜子。在硅中开发并完全验证了一种高效的冷却方法,称为“销员”,“销晶段”。然而,当用作衍射晶体时,在光学器上施加另外的标准。在任何制造步骤中,都不能改变材料的结晶结构。已经完成了测试程序,其评估了用于晶格畸变的现有制造技术。提出了X射线衍射测试结果。目前,我们正在制造一个积极的冷却晶体,在今年夏天晚些时候将在国际象棋F2梁线上进行动态测试。

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