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Design of a LYSO Crystal Electromagnetic Calorimeter for DarkSHINE Experiment

2024/07/25 by Zhiyu Zhao, Qi-Bin Liu, Zhao, Zhiyu +51
Physics and Astronomy · #Astronomy and Astrophysical Research #Scientific Research and Discoveries #Gamma-ray bursts and supernovae

paper · pdf · doi:10.48550/arxiv.2407.17800

Abstract

This paper presents the design and optimization of a LYSO crystal electromagnetic calorimeter (ECAL) for the DarkSHINE experiment, which aims to search for dark photons as potential mediators of dark forces. The ECAL design was evaluated through comprehensive simulations, focusing on optimizing dimensions, material selection, energy distribution, and energy resolution. The ECAL configuration consists of 21×21×11 LYSO crystals, each measuring 2.5×2.5×4 cm3, arranged in a staggered layout to improve signal detection efficiency. A 4 GeV energy dynamic range was established to ensure accurate energy measurements without saturation, which is essential for background rejection and signal identification. A detailed digitization model was developed to simulate the scintillation, SiPM, and ADC behaviors, providing a more realistic representation of detector performance. Additionally, the study assessed radiation damage in the ECAL region, highlighting the necessity of radiation-resistant scintillators and silicon sensors.

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