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硅双板晶体腔中X射线24束衍射的动力学计算。

Dynamical calculation for X-ray 24-beam diffraction in a two-plate crystal cavity of silicon.

作者信息

Chiu M S, Stetsko Yu P, Chang S-L

机构信息

Department of Physics, National Tsing Hua University, Taiwan.

出版信息

Acta Crystallogr A. 2008 May;64(Pt 3):394-403. doi: 10.1107/S0108767308006545. Epub 2008 Apr 18.

Abstract

The X-ray back diffraction of (1240) in a monolithic two-plate silicon cavity occurs at photon energy 14.4388 keV, at which 24 beams are simultaneously excited. Based on the dynamical theory of X-ray diffraction, a theoretical approach has been developed for solving the fundamental equation of dynamical theory to investigate this back diffraction and the interference patterns generated by the Fabry-Perot-type resonance that produces intensity undulation in both transmitted and back-reflected beams. The section of dispersion surface and its associated linear absorption coefficients, wavefield intensities and excitation of mode are calculated. The calculated intensity distribution of the transmitted beam is in a good agreement with the observed one. Details about the interaction between the multiply diffracted X-rays and cavity resonant photons are also reported. Procedures of computer programming are also provided.

摘要

在单片双板硅腔中,(1240)的X射线背向衍射发生在光子能量为14.4388 keV时,此时有24束光同时被激发。基于X射线衍射的动力学理论,已开发出一种理论方法来求解动力学理论的基本方程,以研究这种背向衍射以及由法布里 - 珀罗型共振产生的干涉图样,该共振在透射光束和背反射光束中都会产生强度起伏。计算了色散面的截面及其相关的线性吸收系数、波场强度和模式激发。计算得到的透射光束强度分布与观测结果吻合良好。还报道了多次衍射的X射线与腔共振光子之间相互作用的细节。此外还提供了计算机编程步骤。

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