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X-ray beam-shaping via deformable mirrors: surface profile and point spread function computation for Gaussian beams using physical optics

机译:通过可变形反射镜进行X射线束整形:使用物理光学对高斯束进行表面轮廓和点扩展函数计算

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摘要

X-ray mirrors with high focusing performances are commonly used in different sectors of science, such as X-ray astronomy, medical imaging and synchrotron/free-electron laser beamlines. While deformations of the mirror profile may cause degradation of the focus sharpness, a deliberate deformation of the mirror can be made to endow the focus with a desired size and distribution, via piezo actuators. The resulting profile can be characterized with suitable metrology tools and correlated with the expected optical quality via a wavefront propagation code or, sometimes, predicted using geometric optics. In the latter case and for the special class of profile deformations with monotonically increasing derivative, i.e. concave upwards, the point spread function (PSF) can even be predicted analytically. Moreover, under these assumptions, the relation can also be reversed: from the desired PSF the required profile deformation can be computed analytically, avoiding the use of trial-and-error search codes. However, the computation has been so far limited to geometric optics, which entailed some limitations: for example, mirror diffraction effects and the size of the coherent X-ray source were not considered. In this paper, the beam-shaping formalism in the framework of physical optics is reviewed, in the limit of small light wavelengths and in the case of Gaussian intensity wavefronts. Some examples of shaped profiles are also shown, aiming at turning a Gaussian intensity distribution into a top-hat one, and checks of the shaping performances computing the at-wavelength PSF by means of the WISE code are made.
机译:具有高聚焦性能的X射线镜通常用于科学的不同领域,例如X射线天文学,医学成像和同步加速器/自由电子激光束线。虽然反射镜轮廓的变形可能导致聚焦锐度的下降,但是可以通过压电致动器使反射镜有意地变形,以使聚焦具有期望的尺寸和分布。可以使用合适的度量工具对所得的轮廓进行表征,并通过波前传播代码将其与预期的光学质量相关联,或者有时使用几何光学进行预测。在后一种情况下,并且对于具有单调递增导数(即向上凹入)的特殊类型的轮廓变形,甚至可以解析地预测点扩展函数(PSF)。此外,在这些假设下,该关系也可以颠倒:可以从所需的PSF解析分析所需的轮廓变形,从而避免使用反复试验的搜索代码。但是,到目前为止,该计算仅限于几何光学,这带来了一些限制:例如,未考虑镜面衍射效应和相干X射线源的大小。在本文中,回顾了物理光学框架中的光束整形形式,在小光波长的限制下以及在高斯强度波阵面的情况下。还显示了成形轮廓的一些示例,旨在将高斯强度分布变成礼帽,并通过WISE代码检查了计算波长PSF的成形性能。

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