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February 2, 2026JACOW0 citationsOpen Access

Measurements of single-shot attosecond X-ray pulses at high repetition rate

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VGVeronica GuoAMAgostino MarinelliDCDavid Cesar

Key Points

  • This research aims to measure single-shot attosecond x-ray pulses to explore electron dynamics in molecular systems.
  • Conducted measurements at the superconducting LCLS-II accelerator
  • Utilized an angle-resolving electron time-of-flight spectrometer
  • Performed angular streaking measurements for temporal profiles
  • Achieved high energy and angular resolution in pulse reconstruction
  • Successfully measured attosecond soft x-ray pulses at unprecedented repetition rates
  • Demonstrated capabilities for precise control of x-ray pulses
  • Provided foundational insights for studying ultrafast dynamics in complex systems

Abstract

Electron dynamics in molecules occur on attosecond timescales and drive fundamental processes such as photosynthesis, catalysis, and chemical bond transformations. Understanding these phenomena requires tools with both high temporal resolution and the capability to probe molecular dynamics at high repetition rates. Here, we present the first single-shot measurements of attosecond soft x-ray pulses at the superconducting LCLS-II accelerator. Using an angle-resolving electron time-of-flight spectrometer, we perform angular streaking measurements with high energy and angular resolution, enabling a complete reconstruction of the spatial and temporal profiles of the pulses. These measurements showcase the attosecond science capabilities of LCLS-II at unprecedented repetition rates and provide the foundation for controlling and shaping x-ray pulses to study ultrafast dynamics in complex systems with precision.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/6980fbf6c1c9540dea80dbc2https://doi.org/10.18429/jacow-napac2025-thp052
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