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April 4, 2026JACOW0 citationsOpen Access

Optimizing SGM beamline performance: hexapod and spectroscopy enhancements

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TPTor PedersenJDJames J. DynesSLSandra LeBlanc

Key Points

  • To enhance the performance of the SGM beamline at the CLS by implementing advanced technologies.
  • Integrated a vacuum-compatible hexapod for precise sample manipulation
  • Implemented Bluesky data acquisition software for improved data collection
  • Utilized modelling of the Kirkpatrick-Baez mirror system for adaptive focusing
  • Transitioned from traditional X-ray Absorption Spectroscopy to advanced spectromicroscopy techniques
  • Achieved high-resolution imaging with a 20 mm × 15 mm field of view
  • Provided a beam spot size of less than 10 µm²
  • Significantly improved data quality for routine spectroscopy measurements
  • Enhanced capabilities for environmental and catalytic material studies

Abstract

Recent developments on the Spherical Grating Monochromator (SGM) beamline at the Canadian Light Source (CLS) have significantly enhanced its capabilities, particularly through the integration of a vacuum-compatible Physik Instrumente hexapod (H-811.I2V) and the implementation of Bluesky data acquisition software. These upgrades have facilitated the transition from traditional X-ray Absorption Spectroscopy (XAS) measurements to advanced spectromicroscopy techniques. The hexapod allows for sub-micron scale sample manipulation, enabling high-resolution imaging with a 20 mm × 15 mm field of view. Additionally, the modelling of the Kirkpatrick-Baez (KB) mirror system for adaptive focusing has further optimized the beamline's performance providing a beam spot size of less than 10 µm². These developments have not only significantly improved the beamline's capabilities for environmental and catalytic material studies, but also increased the data quality for all routine spectroscopy measurements conducted on the beamline.

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Cite This Study

Pedersen et al. (2026) studied this question.

synapsesocial.com/papers/69d0af1c659487ece0fa4f4ahttps://doi.org/10.18429/jacow-medsi2025-tup47
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