Advanced Photon Source, Argonne National Laboratory, Argonne, Illinois 60439, USA.
Phys Rev Lett. 2012 Jun 1;108(22):224801. doi: 10.1103/PhysRevLett.108.224801. Epub 2012 May 31.
Realization of x-ray Fabry-Perot (FP) resonance in back-Bragg-reflection crystal cavities has been proposed and explored for many years, but to date no satisfactory performance has been achieved. Here we show that single-cavity crystal resonators intrinsically have limited finesse and efficiency. To break this limit, we demonstrate that monolithic multicavity resonators with equal-width cavities and specific plate thickness ratios can generate ultrahigh-resolution FP resonance with high efficiency, steep peak tails, and ultrahigh contrast simultaneously. The resonance mechanism is similar to that of sequentially cascaded single-cavity resonators. The ultranarrow-bandwidth FP resonance is anticipated to have various applications, including modern ultrahigh-resolution or precision x-ray monochromatization, spectroscopy, coherence purification, coherent diffraction, phase contrast imaging, etc.
X 射线法布里-珀罗(FP)共振在背向布拉格反射晶体腔中的实现已经被提出并探索了多年,但迄今为止尚未取得令人满意的性能。在这里,我们表明单腔晶体谐振器本质上具有有限的精细度和效率。为了打破这个限制,我们证明了具有相等腔宽和特定板厚比的单片多腔谐振器可以同时产生具有高效率、陡峭的峰尾和超高对比度的超高分辨率 FP 共振。该共振机制类似于顺序级联的单腔谐振器。这种超窄带宽 FP 共振预计将有各种应用,包括现代超高分辨率或精密 X 射线单色化、光谱学、相干净化、相干衍射、相衬成像等。