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Laue lens for astrophysics: Extensive comparison between mosaic, curved, and quasi-mosaic crystals

机译:用于天体物理学的劳厄透镜:镶嵌,弯曲和准镶嵌晶体之间的广泛比较

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With the aim of concentrating hard X- and γ-rays coming from celestial sources in the 100–1000 keV energy range, the concept of Laue lens was introduced more than 50 years ago. Crystals are the core of a Laue lens, since they focus the incoming X-rays through Bragg diffraction. For concrete applications, crystals characterized by high diffraction reflectivity are needed along with high-resolution focusing of diffracted photons. Here, an extensive comparison of the types of crystals proposed so far is presented. In order to quantify the focusing capability of a Laue lens based on these crystals, a simulation of a single-ring Laue lens based on the considered optical elements is presented. Finally, the breakthrough in the panorama of diffracting crystals is discussed.
机译:为了集中来自100-1000 keV能量范围内天体的硬X射线和γ射线,劳厄透镜的概念在50多年前就被提出。晶体是劳厄透镜的核心,因为它们通过布拉格衍射聚焦入射的X射线。对于具体应用,需要具有高衍射反射率特征的晶体以及衍射光子的高分辨率聚焦。在此,对到目前为止提出的晶体类型进行了广泛的比较。为了量化基于这些晶体的劳厄透镜的聚焦能力,提出了基于所考虑的光学元件的单环劳厄透镜的仿真。最后,讨论了衍射晶体全景中的突破。

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