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Highly reproducible quasi-mosaic crystals as optical components for a Laue lens

机译:高度可复制的准镶嵌晶体,作为劳厄透镜的光学组件

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The realization of a Laue lens for astronomical purposes involves the mass production of a series of crystalline tiles as optical components, allowing high-efficiency diffraction and high-resolution focusing of photons. Crystals with self-standing curved diffraction planes is a valid and promising solution. Exploiting the quasi-mosaic effect, it turns out to be possible to diffract radiation at higher resolution. In this paper we present the realization of 150 quasi-mosaic Ge samples, bent by grooving one of their largest surface. We show that grooving method is a viable technique to manufacture such crystals in a simple and very reproducible way, thus compatible with mass production. Realized samples present very homogenous curvature. Furthermore, with a specific chemical etch, it is possible to fine adjust one by one the radius of curvature of the grooved samples. Realized crystals was selected for the ASI’s Laue project, that involves the implementation of a prototype of a Laue lens for hard X- and soft γ -ray astronomy.
机译:用于天文目的劳厄透镜的实现涉及大量生产作为光学组件的晶体砖,从而实现光子的高效衍射和高分辨率聚焦。具有自弯曲弯曲面的晶体是一种有效且有前途的解决方案。利用准镶嵌效应,可以以更高的分辨率衍射辐射。在本文中,我们介绍了150个准镶嵌Ge样品的实现,方法是对它们的最大表面之一进行切槽。我们表明,开槽方法是一种以简单且可重复生产的方式制造此类晶体的可行技术,因此可与批量生产兼容。实现的样本呈现非常均匀的曲率。此外,通过特定的化学蚀刻,可以微调带槽样品的曲率半径。 ASI的劳厄(Laue)项目选择了已实现的晶体,该项目涉及实施劳厄(Laue)透镜原型,以实现硬X和软γ射线天文学。

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