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April 17, 2026Journal of Synchrotron Radiation0 citationsOpen Access

Total-reflection-based microscope compatible with X-ray and visible light for sample positioning

KYKyota YoshinagaJOJordan Tyler O'NealKSKai Sakurai

Key Points

  • The aim is to simplify the calibration of a visible-light microscope integrated with an X-ray imaging system.
  • Developed a total-reflection microscope using a Wolter mirror as both X-ray condenser and visible-light objective.
  • Implemented simple adjustments with an optical lens and three planar mirrors for calibration.
  • Constructed the system for a soft X-ray ptychography setup.
  • Successfully calibrated the visible-light microscope with minimal adjustments.
  • Enabled positioning of biological samples without radiation exposure.

Abstract

Sample positioning in X-ray imaging is often technically demanding and involves radiation exposure to the sample. For easier and damage-free positioning, the integration of a visible-light microscope is an effective and widely adopted approach. However, such visible-light microscopes require careful calibration of the objective optic against the X-ray microscope, which introduces additional challenges. To address this issue, we propose a simple total-reflection-based microscope compatible with X-rays and visible light using a Wolter mirror which functions as both X-ray condenser optic and visible-light objective optic. Calibrating our visible-light microscope requires only simple adjustment of an optical lens and three planar mirrors, while no adjustment of the objective optic. We constructed our proposed system for a soft X-ray ptychography system and successfully demonstrated the simple calibration of the visible-light microscope, which was then applied to position a biological sample without delivering a radiation dose.

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Cite This Study

Yoshinaga et al. (2026) studied this question.

synapsesocial.com/papers/69e1cdc45cdc762e9d85704fhttps://doi.org/10.1107/s1600577526003127
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