首页> 美国卫生研究院文献>Journal of Synchrotron Radiation >Performance optimization of a bendable parabolic cylinder collimating X-ray mirror for the ALS micro-XAS beamline 10.3.2
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Performance optimization of a bendable parabolic cylinder collimating X-ray mirror for the ALS micro-XAS beamline 10.3.2

机译:ALS微型XAS光束线10.3.2的可弯曲抛物柱面准直X射线镜的性能优化

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摘要

The Advanced Light Source (ALS) beamline (BL) 10.3.2 is an apparatus for X-ray microprobe spectroscopy and diffraction experiments, operating in the energy range 2.4–17 keV. The performance of the beamline, namely the spatial and energy resolutions of the measurements, depends significantly on the collimation quality of light incident on the monochromator. In the BL 10.3.2 end-station, the synchrotron source is imaged 1:1 onto a set of roll slits which form a virtual source. The light from this source is collimated in the vertical direction by a bendable parabolic cylinder mirror. Details are presented of the mirror design, which allows for precision assembly, alignment and shaping of the mirror, as well as for extending of the mirror operating lifetime by a factor of ∼10. Assembly, mirror optimal shaping and preliminary alignment were performed ex situ in the ALS X-ray Optics Laboratory (XROL). Using an original method for optimal ex situ characterization and setting of bendable X-ray optics developed at the XROL, a root-mean-square (RMS) residual surface slope error of 0.31 µrad with respect to the desired parabola, and an RMS residual height error of less than 3 nm were achieved. Once in place at the beamline, deviations from the designed optical geometry (e.g. due to the tolerances for setting the distance to the virtual source, the grazing incidence angle, the transverse position) and/or mirror shape (e.g. due to a heat load deformation) may appear. Due to the errors, on installation the energy spread from the monochromator is typically a few electron-volts. Here, a new technique developed and successfully implemented for at-wavelength (in situ) fine optimal tuning of the mirror, enabling us to reduce the collimation-induced energy spread to ∼0.05 eV, is described.
机译:高级光源(ALS)光束线(BL)10.3.2是用于X射线微探针光谱学和衍射实验的设备,工作在2.4-17keV的能量范围内。光束线的性能(即测量的空间分辨率和能量分辨率)在很大程度上取决于入射在单色仪上的光的准直质量。在BL 10.3.2终端站中,将同步加速器源1:1成像到形成虚拟源的一组辊缝上。来自该光源的光通过可弯曲的抛物柱面镜在垂直方向上准直。详细介绍了后视镜的设计,可以精确地组装,对准和调整后视镜的形状,并将后视镜的使用寿命延长约10倍。在ALS X射线光学实验室(XROL)现场进行了组装,镜面最佳成形和初步对准。使用原始方法对XROL上开发的可弯曲X射线光学器件进行最佳的异位表征和设置,相对于所需抛物线的均方根(RMS)残留表面坡度误差为0.31µµrad,并且RMS残留高度误差小于3nm。一旦在光束线上就位,就会偏离设计的光学几何形状(例如,由于设置到虚拟光源的距离的公差,掠入射角,横向位置)和/或镜面形状(例如,由于热负荷变形) )可能会出现。由于这些错误,在安装时,从单色仪散发出来的能量通常为几个电子伏特。在这里,描述了一种新技术的开发和成功实施,该技术用于对镜子进行波长(原位)精细优化调整,使我们能够将准直感应能量散布减小到〜0.05 eV。

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