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Wide-band multilayer mirrors for medium to hard x-ray applications

机译:适用于中硬X射线应用的宽带多层反射镜

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Recent progress in the design and the manufacturing of wide bandpass x-ray multilayers has opened up new possibilities in hard x-ray optics, particularly in astrophysics and synchrotron x-ray applications. In contrast to previous design based on semi-empirical laws or extensive computer calculation, the recent development of an analytical expression has greatly improved the design of aperiodic multilayer mirrors, allowing to generate any given spectral dependence of the reflectivity. In practice, an approximate differential equation is used to derive an in-depth multilayer composition profile whose reflectivity response approaches the desired one. Based on this asymptotic solution, usually sufficiently close to the final solution, the optimum multilayer composition profile is calculated numerically using a classical downhill algorithm. We have studied the intrinsic characteristics of depth-graded multilayers using the procedure described above, with an emphasis put on the important case of a flat reflectivity response over a large but limited spectral range. The performance of depth-graded multilayer mirrors manufactured at ESRF and characterized at the BM5 beamline are presented. The necessity to account at the design level for deposition process parameters, such as chemical composition and thickness errors, and for the effective optical constants is highlighted.
机译:宽带通X射线多层膜的设计和制造方面的最新进展为硬X射线光学器件开辟了新的可能性,特别是在天体物理学和同步加速器X射线应用中。与以前的基于半经验定律或大量计算机计算的设计相比,分析表达式的最新发展极大地改善了非周期性多层反射镜的设计,从而可以生成任何给定的反射率光谱相关性。在实践中,使用近似微分方程来得出深度多层成分分布图,其反射率响应接近所需值。基于此渐近解(通常足够接近最终解),可以使用经典的下坡算法在数值上计算出最佳的多层成分分布。我们已经使用上述方法研究了深度渐变多层膜的固有特性,重点放在了在较大但有限的光谱范围内产生平坦反射率响应的重要情况。介绍了在ESRF制造并在BM5光束线上表征的深度渐变多层反射镜的性能。强调了在设计级别考虑沉积工艺参数(例如化学成分和厚度误差)以及有效光学常数的必要性。

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