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Optical performance of materials for X-ray refractive optics in the energy range 8-100keV

机译:X射线折射光学材料在8-100keV能量范围内的光学性能

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摘要

A quantitative analysis of the crucial characteristics of currently used and promising materials for X-ray refractive optics is performed in the extended energy range 8-100keV. According to the examined parameters, beryllium is the material of choice for X-ray compound refractive lenses (CRLs) in the energy range 8-25keV. At higher energies the use of CRLs made of diamond and the cubic phase of boron nitride (c-BN) is beneficial. It was demonstrated that the presence of the elements of the fourth (or higher) period has a fatal effect on the functional X-ray properties even if low-Z elements dominate in the compound, like in YB66. Macroscopic properties are discussed: much higher melting points and thermal conductivities of C and c-BN enable them to be used at the new generation of synchrotron radiation sources and X-ray free-electron lasers. The role of crystal and internal structure is discussed: materials with high density are preferable for refractive applications while less dense phases are suitable for X-ray windows. Single-crystal or amorphous glass-like materials based on Li, Be, B or C that are free of diffuse scattering from grain boundaries, voids and inclusions are the best candidates for applications of highly coherent X-ray beams.
机译:在扩展的能量范围8-100keV中,对X射线折射光学器件当前使用的和有前途的材料的关键特性进行了定量分析。根据检查的参数,铍是能量范围为8-25keV的X射线复合折射透镜(CRL)的首选材料。在较高能量下,使用由金刚石和立方氮化硼(c-BN)制成的CRL是有益的。已证明,即使低Z元素在化合物中占主导地位,如YB66一样,第四(或更高)时期元素的存在也会对功能X射线性能产生致命影响。讨论了宏观特性:C和c-BN的更高的熔点和热导率使其可以用于新一代的同步加速器辐射源和X射线自由电子激光器。讨论了晶体和内部结构的作用:高密度材料更适合折射应用,而密度较小的相则适合X射线窗。基于Li,Be,B或C的单晶或无定形玻璃状材料(无晶界,空隙和夹杂物的弥散散射)是应用高相干X射线束的最佳选择。

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