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Design of an amplitude-splitting hard x-ray delay line with subnanoradian stability

机译:具有亚诺纳型稳定性的振幅分裂硬X射线延迟线的设计

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We present the design and analysis of a hard x-ray split-delay optical arrangement that combines diffractive and crystal optics. Transmission gratings are employed to achieve the much-desired amplitude splitting and recombination of the beam. Asymmetric channel-cut crystals are utilized to tune the relative delay time. The use of a dispersion-compensation arrangement of the crystals allows the system to achieve subnanoradian pointing stability during a delay scan. It also minimizes wavefront distortion and preserves the pulse front and pulse duration. We analyze the performance of a prototype design that can cover a delay time range of 15 ps with a sub-20 fs time resolution at 10 keV. We anticipate that this system can fully satisfy the very demanding stability requirements for performing split-pulse x-ray photon correlation spectroscopy measurements for the investigation of fast atomic scale dynamics in complex disordered matter. (C) 2020 Optical Society of America
机译:我们介绍了一种结合衍射和晶光学器件的硬X射线分流延迟光学布置的设计和分析。 使用传动式光栅来实现光束的绝望幅度分割和重组。 非对称通道切割晶体用于调谐相对延迟时间。 使用晶体的色散补偿布置允许该系统在延迟扫描期间实现亚诺纳罗拉德指向稳定性。 它还最小化了波前失真并保留脉冲前沿和脉冲持续时间。 我们分析了一种原型设计的性能,其可以在10keV下覆盖15 ps的延迟时间范围,其中子20 fs时间分辨率。 我们预计该系统可以完全满足对执行分裂脉冲X射线光子相关光谱测量的非常苛刻的稳定性要求,以便在复杂无序物质中调查快速原子尺度动态。 (c)2020美国光学学会

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