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Theory of angular-dispersive, imaging hard-x-ray spectrographs

机译:角分散理论,硬X射线光谱仪成像

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A spectrograph is an optical instrument that disperses photons of different energies into distinct directions and space locations and that images photon spectra on a position-sensitive detector. Spectrographs consist of collimating, angular dispersive, and focusing optical elements. Bragg reflecting crystals arranged in an asymmetric scattering geometry can be used as the dispersing elements in the hard-x-ray regime. A ray-transfer matrix technique is applied to propagate x-rays through the optical elements. Several optical designs of hard-x-ray spectrographs are proposed and their performance is analyzed. Spectrographs with an energy resolution of 0.1 meV and a spectral window of imaging up to a few tens of meVs are shown to be feasible for inelastic x-ray scattering (IXS) spectroscopy applications. In another example, a spectrograph with a 1-meV spectral resolution and 85-meV spectral window of imaging is considered for Cu K-edge resonant IXS.
机译:光谱仪是一种光学仪器,可将不同能量的光子分散到不同的方向和空间位置,并在位置敏感探测器上成像光子光谱。光谱仪由准直,角度色散和聚焦光学元件组成。可以将以非对称散射几何形状排列的布拉格反射晶体用作硬X射线方案中的分散元素。射线传输矩阵技术被应用于通过光学元件传播X射线。提出了几种硬X射线光谱仪的光学设计,并对其性能进行了分析。能量分辨率为0.1 meV的光谱仪和高达数十meV的成像光谱窗口被证明对于非弹性X射线散射(IXS)光谱应用是可行的。在另一个示例中,对于Cu K边缘共振IXS,考虑具有1meV光谱分辨率和85meV成像窗口的光谱仪。

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