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January 22, 2026JACOW1 citationsOpen Access

Upgraded beam profile monitoring using Chromox and fiber optic imaging for high-radiation environments

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AGAlexander GottsteinEKEva KasandaIMIsidre Mateu

Key Points

  • To enhance beam profile monitoring in high-radiation environments with minimal maintenance needs.
  • Developed a new beam monitoring system using a Chromox ceramic scintillator.
  • Relocated the CMOS camera outside the irradiation zone using a 20-meter fiber optic bundle.
  • Implemented a pneumatic actuator for remote control of the scintillator's position.
  • Evaluated the radiation hardness of Chromox and the fiber optic system.
  • Characterized optical resolution and fidelity of the new setup.
  • Demonstrated stable imaging performance under high radiation exposure.
  • Addressed frequent maintenance issues present in the previous system.
  • Improved robustness of the monitoring solution in demanding accelerator contexts.

Abstract

We present an upgraded beam monitoring system designed for use in high-radiation environments where conventional imaging solutions rapidly degrade. In the presented device the radiation-sensitive P47 phosphor screen of the previous system* is replaced with a radiation-hard Chromox ceramic scintillator and relocates the CMOS camera outside the irradiation zone by transmitting the optical signal through a 20-meter radiation-tolerant fiber optic bundle. To enhance operational flexibility, a pneumatic actuator enables remote insertion and retraction of the scintillating screen into the beam path. The radiation hardness of the Chromox ceramic and the fiber bundle was evaluated, and the optical system’s resolution and fidelity were characterized. The new setup demonstrated stable imaging performance under irradiation, addressing the frequent maintenance issues of the previous system. These improvements offer a robust and low-maintenance solution for beam profile monitoring in demanding accelerator environments.

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Cite This Study

Gottstein et al. (2026) studied this question.

synapsesocial.com/papers/6971be8d642b1836717e32d5https://doi.org/10.18429/jacow-ibic2025-tupmo16
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