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Bent crystals by surface grooving method for high-efficiency concentration of hard x-ray photons by a Laue lens

机译:通过表面开槽方法弯曲晶体,以通过劳厄透镜高效浓缩硬X射线光子

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We present an experimental study on the method of surface grooving for bending crystals for the realization of a hard x-ray Laue lens. Bent Si and Ge crystalline plates were analyzed by x-ray diffraction of their (111) planes at the European Synchrotron Radiation Facility. Crystals diffracted photons from 150 to 700 keV with efficiency peaking 95% at 150 keV for Si. Measured rocking curves of the samples showed flat-topped profiles with their FWHM equal to the crystal bending, i.e., the method of surface grooving proved to evenly bend the crystals, their energy passband being very well controlled. Surface grooving technique has been found to offer both high reproducibility and easy control of diffraction properties of the crystals. Besides, this method is cheap, simple and compatible with mass production, making it a reliable technique for fabrication of a Laue lens, where serial production of crystals should be envisaged. A Laue lens made of crystals bent by surface grooves can lead to significant detection improvement in astrophysical applications.
机译:我们提供了一种用于弯曲晶体的表面开槽方法的实验研究,以实现硬X射线劳厄透镜。通过在欧洲同步加速器辐射设施上对它们的(111)平面进行X射线衍射分析了弯曲的Si和Ge晶状板。晶体将光子从150 keV衍射到硅,在150 keV时效率达到95%的峰值。样品的测得摇摆曲线显示出其FWHM等于晶体弯曲的平顶轮廓,即表面开槽方法证明晶体均匀弯曲,其能量通带得到很好的控制。已经发现表面开槽技术既可提供高再现性,又可轻松控制晶体的衍射特性。此外,该方法便宜,简单且可与批量生产兼容,使其成为劳埃透镜制造的可靠技术,在劳埃透镜中,应考虑批量生产晶体。由表面凹槽弯曲的晶体制成的劳厄透镜可以在天体物理应用中显着提高检测效率。

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