Diamond Channel-Cut Crystals for High-Heat-Load, Beam-Multiplexing, Narrow-Band X-ray Monochromators
Abstract
Next-generation, high-brilliance x-ray photon sources call for new x-ray optics. Here we demonstrate the feasibility of using monolithic diamond channel-cut crystals as high-heat-load, beam-multiplexing, narrow-band, mechanically-stable x-ray monochromators with high-power x-ray beams at cutting-edge, high-repetition-rate x-ray free-electron laser (XFEL) facilities. The diamond channel-cut crystals fabricated and characterized in these studies are designed as two-bounce Bragg reflection monochromators directing 14.4-keV or 12.4-keV x-rays within a 15-meV-bandwidth to Fe or Sc nuclear resonant scattering experiments, respectively. The crystal design allows out-of-band x-rays within a -eV XFEL bandwidth to be transmitted with minimal losses to alternative simultaneous experiments. Only \% of the incident -W x-ray beam is absorbed in a 50-m-thick first diamond crystal reflector, ensuring that the monochromator crystal is highly stable. Other x-ray optics applications of diamond channel-cut crystals are anticipated.
Keywords
Cite
@article{arxiv.2105.09301,
title = {Diamond Channel-Cut Crystals for High-Heat-Load, Beam-Multiplexing, Narrow-Band X-ray Monochromators},
author = {Yuri Shvyd'ko and Sergey Terentyev and Vladimir Blank and Tomasz Kolodziej},
journal= {arXiv preprint arXiv:2105.09301},
year = {2021}
}
Comments
9 pages, 11 figures