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Simulation of X-ray transmission and spatial imaging of polycapillary lenses with square cross-sections

机译:方形横截面X射线透镜的X射线传输及空间成像模拟

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摘要

Conventional polycapillary X-ray lenses are fabricated using an arrangement of hollow cylindrical tubes (i.e., capillaries) in a hexagonal structure, which necessarily includes triangular-shaped non-functional spaces between the capillaries. These non-functional spaces reduce the transmission efficiency of the lens, and can also affect the utilization of the pixels of charge-coupled devices in imaging applications. These disadvantages can be overcome by adopting a polycapillary X-ray lens structure with a square cross-section fabricated from a square matrix array of capillaries, each with equivalent square cross-sections. We develop a mathematical model of a square polycapillary X-ray lens, and also present a simulation-driven numerical method for calculating the X-ray transmission efficiency, intensity distribution of the exit plane and the focal spot based on a ray-tracing technique.
机译:使用六边形结构中的空心圆柱形管(即毛细管)的布置制造常规的多百分子X射线镜片,其必然包括毛细管之间的三角形非功能空间。 这些非功能空间降低了镜头的传输效率,并且还可以影响成像应用中的电荷耦合器件的像素的利用。 可以通过采用具有由毛细管的方形矩阵阵列制成的方形横截面的方形横截面来克服这些缺点,每个横截面具有等同的方形横截面。 我们开发了方形多百分子X射线镜片的数学模型,并且还提出了一种用于计算基于光线跟踪技术的X射线传输效率,出口平面的强度分布和焦斑的模拟驱动的数值方法。

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