Journal of Synchrotron Radiation (May 2022)

X-ray zooming optics for analyzer-based multi-contrast computed tomography

  • Keiichi Hirano,
  • Hiroshi Sugiyama,
  • Ryutaro Nishimura,
  • Daisuke Wakabayashi,
  • Yoshio Suzuki,
  • Noriyuki Igarashi,
  • Nobumasa Funamori

DOI
https://doi.org/10.1107/S1600577522001412
Journal volume & issue
Vol. 29, no. 3
pp. 787 – 793

Abstract

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An X-ray analyzer-based optics with a zoom function is proposed for observing various samples with apparent-absorption contrast, phase contrast and scattering contrast. The proposed X-ray optics consists of a collimator crystal and an analyzer crystal arranged in a nondispersive (+, −) geometry with a sample placed between them. For the implementation of the zoom function, an asymmetrically cut crystal in the rotated-inclined geometry was used for the analyzer. Proof-of-principle experiments were performed at the vertical wiggler beamline BL-14B of the Photon Factory. First, the magnification was set to 1×, and then it was zoomed into the optimal magnification (10×). At these magnifications, tri-modal contrast cross-sectional images of a sample were obtained by computed tomography. It was confirmed that the image quality at 10× was superior to that at 1×. This achievement opens up new possibilities for observing an entire sample or regions of interest within a sample at optimal magnification, and is expected to be useful for materials science, condensed matter physics, archeology and biomedical science.

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