Istituto di Fotonica e Nanotecnologie, CNR, Via Cineto Romano 42, 00156 Roma, Italy.
J Synchrotron Radiat. 2010 Jan;17(1):61-8. doi: 10.1107/S0909049509038515. Epub 2009 Nov 14.
The coupling and propagation of electromagnetic waves through planar X-ray waveguides (WG) with vacuum gap and Si claddings are analyzed in detail, starting from the source and ending at the detector. The general case of linearly tapered WGs (i.e. with the entrance aperture different from the exit one) is considered. Different kinds of sources, i.e. synchrotron radiation and laboratory desk-top sources, have been considered, with the former providing a fully coherent incoming beam and the latter partially coherent beams. It is demonstrated that useful information about the parameters of the WG can be derived, comparing experimental results with computer simulation based on analytical solutions of the Helmholtz equation which take into account the amplitude and phase matching between the standing waves created in front of the WG, and the resonance modes propagating into the WG.
从源头到探测器,详细分析了带有真空间隙和 Si 覆盖层的平面 X 射线波导(WG)中电磁波的耦合和传播。考虑了一般的线性渐变 WG(即入口孔径与出口孔径不同)。考虑了不同类型的光源,即同步辐射和实验室台式光源,前者提供完全相干的入射光束,后者提供部分相干光束。结果表明,通过将亥姆霍兹方程的解析解与基于计算机的模拟结果进行比较,可以得出有关 WG 参数的有用信息,该解析解考虑了在 WG 前形成的驻波与传播到 WG 中的共振模式之间的幅度和相位匹配。