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Random-matrix bases, ghost imaging, and x-ray phase contrast computational ghost imaging

机译:随机矩阵基础,鬼映像和X射线相位对比计算鬼成像

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A theory of random-matrix bases is presented, including expressions for orthogonality, completeness, and the random-matrix synthesis of arbitrarymatrices. This is applied to ghost imaging as the realization of a random-basis reconstruction, including an expression for the resulting signal-to-noise ratio. Analysis of conventional direct imaging and ghost imaging leads to a criterion which, when satisfied, implies a reduced dose for computational ghost imaging. We also propose an experiment for x-ray phase contrast computational ghost imaging, which enables differential phase contrast to be achieved in an x-ray ghost-imaging context. We give a numerically robust solution to the associated inverse problem of decoding differential phase contrast x-ray ghost images, to yield a quantitative map of the projected thickness of the sample.
机译:呈现了随机矩阵基础的理论,包括用于正交,完整性和随机矩阵合成的表达式的Arbitrarymatrices。 这是应用于Ghost成像作为实现随机基重的重建,包括所产生的信噪比的表达。 传统直接成像和鬼成像的分析导致标准,当满足时,这意味着减少的计算鬼成像剂量。 我们还提出了一种对X射线相位对比计算鬼成像的实验,其能够在X射线Ghost成像背景下实现差分相位对比度。 我们给出了对解码差分相位对比X射线重影图像的相关逆问题的数值稳健的解决方案,以产生样本的投影厚度的定量图。

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