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January 22, 2026JACOW0 citationsOpen Access

Bunch-by-bunch beam current and lifetime measurement with interleaved sampling at HLS

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AWAn WangXYXing YangYDYouming Deng

Key Points

  • This research aims to develop a high-precision system for measuring bunch-by-bunch beam current and lifetime at HLS.
  • Developed a beam diagnostics system using interleaved sampling technology
  • Achieved a sampling rate of 6.5 GHz
  • Used amplitude extraction via cross-correlation in single-bunch mode
  • Averaged over 200 turns to enhance resolution at a 23 kHz data refresh rate
  • Proposed an integration method to address accuracy issues in multi-bunch mode
  • Achieved a current relative resolution of 0.12% in single-bunch mode
  • Improved resolution to 0.04% by averaging
  • Identified degradation in accuracy due to longitudinal oscillations in multi-bunch mode
  • Proposed methods effectively mitigate the impact of bunch length and phase oscillations

Abstract

To achieve high-precision, bunch-by-bunch beam cur-rent and lifetime measurements at the Hefei Light Source (HLS), we developed a beam diagnostics system based on interleaved sampling technology, achieving an equivalent sampling rate of 6.5 GHz. In single-bunch mode, amplitude extraction via cross-correlation with a single response function yieds a turn-by-turn current relative resolution of 0.12%. By averaging over 200 turns, the resolution is improved to 0.04% at a 23 kHz data refresh rate, enabling fast and accurate lifetime calculations. However, in multi-bunch high-current mode, large longitudinal oscillations degrade the accura-cy of amplitude extraction when using a fixed-response function. We propose an integration method to mitigate the effects of bunch length and phase oscillations on beam current measurements. The method and experi-mental results provide a practical solution for machines exhibiting large longitudinal oscillations, such as HLS.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6971be6b642b1836717e31afhttps://doi.org/10.18429/jacow-ibic2025-mopmo01
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