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January 22, 2026JACOW0 citationsOpen Access

Simultaneous measurements with fast beam size and position monitors disentangle the sudden beam loss evolution mechanism

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GMGaku MitsukaRNRiku NomaruTITakashi Ishida

Key Points

  • The aim is to understand sudden beam loss (SBL) events at SuperKEKB through advanced monitoring techniques.
  • Developed new turn-by-turn beam size monitors in X-ray and visible light.
  • Utilized bunch-by-bunch beam position monitors with novel RFSoC architecture.
  • Conducted simultaneous measurements of beam size and position over several turns.
  • Identified the evolution mechanism of sudden beam loss events.
  • Determined key variations in beam size and position just before SBL-induced aborts.

Abstract

At the SuperKEKB electron-positron collider, which aims to achieve the world's highest luminosity, "Sudden Beam Loss events (SBL)" have prevented its stable operation, in which several tens of percent of the beam current is lost and aborted within several turns (20-50 µs). Elucidating SBLs, which can cause extensive damage to accelerator components and the Belle II experiment detectors, is a pressing issue for SuperKEKB. To measure the beam size and position variation, key information for disentangling SBLs, over dozens of turns just before the SBL-induced beam aborts, we have developed new turn-by-turn beam size monitors in two different wavelength regions, X-ray and visible light, and bunch-by-bunch beam position monitors where one has utilized a novel architecture AMD/Xilinx RFSoC. Simultaneous measurements of turn-by-turn beam size and bunch-by-bunch beam position enable elucidation of the cause and time evolution mechanism of the SBL events. In this presentation, we will first introduce recently developed fast beam size and beam position monitors, then show their simultaneous measurements of SBL events. Finally, we will discuss the possible causes and time evolution mechanisms of the SBL events.

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Cite This Study

Mitsuka et al. (2026) studied this question.

synapsesocial.com/papers/6971be6b642b1836717e3205https://doi.org/10.18429/jacow-ibic2025-webi01
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