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Crystal cavity resonance for hard x rays: A diffraction experiment
Journal article   Open access   Peer reviewed

Crystal cavity resonance for hard x rays: A diffraction experiment

S.-L. Chang, Yu.P. Stetsko, M.-T. Tang, Y.-R. Lee, W.-H. Sun, M. Yabashi, T. Ishikawa, H.-H. Wu, B.-Y. Shew, Y.-H. Lin, …
Physical Review B - Condensed Matter and Materials Physics, Vol.74(13), 134111
2006

Abstract

We report the details of the recent x-ray back diffraction experiments, in which interference fringes due to x-ray cavity resonance are unambiguously observed. The Fabry-Pérot type cavities, the tested crystal devices of reflectivity R 0.5 and finesse F 2.3, consist of monolithic two-plate and eight-plate silicon crystals. They were prepared by using x-ray lithographic techniques. The thicknesses of the crystal plates and the gaps between the two adjacent plates are a few tens to hundreds μm. The (12 4 0) back reflection and synchrotron x-radiation of energy resolution ΔE=0.36 meV at 14.4388 keV are employed. Interference fringes in angle- and photon-energy scans for two-plate and eight-plate cavities are shown. Considerations on the temporal and spatial coherence for observable resonance interference fringes using synchrotron x-rays are presented. The details about the accompanied simultaneous 24-beam diffraction in relation to x-ray photon energy are also described. © 2006 The American Physical Society.
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