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High-efficiency coherence-preserving harmonic rejection with crystal optics

机译:高效光学相干保持谐波抑制

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摘要

This work reports a harmonic-rejection scheme based on the combination of Si(111) monochromator and Si(220) harmonic-rejection crystal optics. This approach is of importance to a wide range of X-ray applications in all three major branches of modern X-ray science (scattering, spectroscopy, imaging) based at major facilities, and especially relevant to the capabilities offered by the new diffraction-limited storage rings. It was demonstrated both theoretically and experimentally that, when used with a synchrotron undulator source over a broad range of X-ray energies of interest, the harmonic-rejection crystals transmit the incident harmonic X-rays on the order of 10−6. Considering the flux ratio of fundamental and harmonic X-rays in the incident beam, this scheme achieves a total flux ratio of harmonic radiation to fundamental radiation on the order of 10−10. The spatial coherence of the undulator beam is preserved in the transmitted fundamental radiation while the harmonic radiation is suppressed, making this scheme suitable not only for current third-generation synchrotron sources but also for the new diffraction-limited storage rings where coherence preservation is an even higher priority. Compared with conventional harmonic-rejection mirrors, where coherence is poorly preserved and harmonic rejection is less effective, this scheme has the added advantage of lower cost and footprint. This approach has been successfully utilized at the ultra-small-angle X-ray scattering instrument at the Advanced Photon Source for scattering, imaging and coherent X-ray photon correlation spectroscopy experiments. With minor modification, the harmonic rejection can be improved by a further five orders of magnitude, enabling even more performance capabilities.
机译:这项工作报告了基于Si(111)单色仪和Si(220)抑制谐波晶体光学器件的谐波抑制方案。这种方法对于以主要设施为基础的现代X射线科学的所有三个主要分支(散射,光谱学,成像)中的广泛X射线应用至关重要,特别是与新的衍射极限技术所提供的功能有关。储物环。从理论上和实验上都证明,当与同步辐射波源一起使用时,在宽范围的感兴趣的X射线能量上使用时,谐波抑制晶体会透射入射的X射线,其数量级为10 。考虑到入射光束中基波和谐波X射线的通量比,该方案将谐波辐射与基波的总通量比​​定为10 -10 。起伏光束的空间相干性在透射的基本辐射中得以保留,而谐波辐射得到了抑制,这使得该方案不仅适用于当前的第三代同步加速器源,而且适用于相干性保持均匀的新的衍射极限存储环更高的优先级。与传统的谐波抑制镜相比,传统的谐波抑制镜的相干性差,谐波抑制效果不佳,该方案具有成本低,占位少的优点。这种方法已被高级光子源的超小角度X射线散射仪成功地用于散射,成像和相干X射线光子相关光谱实验。通过较小的修改,谐波抑制可以进一步提高五个数量级,从而实现更高的性能。

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