Calibration of diamond detectors for dosimetry in beam-loss monitoring
arXiv:2102.03273 · doi:10.1016/j.nima.2021.165383
Abstract
Artificially-grown diamond crystals have unique properties that make them suitable as solid-state particle detectors and dosimeters in high-radiation environments. We have been using sensors based on single-crystal diamond grown by chemical vapour deposition for dosimetry and beam-loss monitoring at the SuperKEKB collider. Here we describe the assembly and the suite of test and calibration procedures adopted to characterise the diamond-based detectors of this monitoring system. We report the results obtained on 28 detectors and assess the stability and uniformity of response of these devices.
11 pages, 8 figures
References in corpus (1)
Cited by in corpus (6)
- The Design, Construction, Operation and Performance of the Belle II Silicon Vertex Detector
- Performance of the diamond-based beam-loss monitor system of Belle II
- Measurements of Beam Backgrounds in SuperKEKB Phase 2
- Development and Implementation of Advanced Beam Diagnostic and Abort Systems in SuperKEKB
- Simulation of the response of a diamond-based radiation detector to ultra-short and intense high-energy electron pulses
- Charge-Carrier Mobility in Diamond: Review, Data Compilation, and Modelling for Detector Simulations