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Self-standing bent silicon crystals for very high efficiency Laue lens

机译:自立式弯曲硅晶体,可实现非常高效的劳厄透镜

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Silicon mono-crystals have been bent thanks to a series of parallel superficial indentations on one of the largest faces of the crystals. This technique relies on irreversible compression of the crystal beneath and beside the indentations. This latter causes deformation with no need for external device, resulting in a uniform self-standing curvature within the crystal. Indented Si crystals have been characterized at European Synchrotron Radiation Facility using a monochromatic beam ranging from 150 to 700 keV. Crystals exhibited very high diffraction efficiency over a broad range of energy, peaking 95% at 150 keV. Measured angular spread of the diffracted beam was always very close to the morphological curvature of the sample under investigation, proving that the energy passband of bent crystals can be controlled by simply imparting a selected curvature to the sample. The method of superficial indentations was found to offer high reproducibility and easy control of diffraction properties of the crystals. Moreover the method is cheap and simple, being based on mass production tools. A Laue lens made of crystals bent by superficial indentations can provide high-efficiency concentration of hard x-ray photons, leading significant improvement in many astrophysical applications.
机译:单晶硅的弯曲是由于晶体最大表面之一上的一系列平行表面凹痕所致。该技术依赖于压痕下方和旁边的晶体的不可逆压缩。后者无需外部设备即可引起变形,从而在晶体内产生均匀的自立曲率。在欧洲同步加速器辐射设施中,使用150至700 keV的单色光束对压痕的Si晶体进行了表征。晶体在很宽的能量范围内都显示出很高的衍射效率,在150 keV时达到95%的峰值。所测得的衍射光束的角展度总是非常接近所研究样品的形态曲率,证明可以通过简单地赋予样品选定的曲率来控制弯曲晶体的能量通带。发现表面压痕的方法提供了高再现性并且易于控制晶体的衍射性质。而且,该方法便宜且简单,是基于大量生产工具的。由表面凹痕弯曲的晶体制成的劳厄透镜可以提供高效率的硬X射线光子集中,从而导致许多天体物理应用的显着改善。

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