Calibration of an Irradiated Prototype for the EIC Zero-Degree Calorimeter

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Zhang, Weibin, Liang, Xilin, Preins, Sean, Arratia, Miguel
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911570999640064
author Zhang, Weibin
Liang, Xilin
Preins, Sean
Arratia, Miguel
author_facet Zhang, Weibin
Liang, Xilin
Preins, Sean
Arratia, Miguel
contents We study the response of a prototype Zero-Degree Calorimeter (ZDC) detector to irradiation equivalent to 10$^{11}$ 1-MeV $n_{\text{eq}}/\text{cm}^{2}$, which matches the expected exposure after one year of operation at full nominal luminosity at the future Electron-Ion Collider (EIC). The prototype, which consists of 563 channels and represents about 10 percent of the final ZDC design in terms of both channel count and detector volume, was irradiated at the NASA Space Radiation Laboratory (NSRL) at Brookhaven National Laboratory (BNL) with proton beams. We demonstrate that, despite significant radiation damage to the SiPMs and non-uniform degradation across the detector volume, the detector can be successfully calibrated on a channel-by-channel basis using cosmic-ray data. The damage profile, similar to what is expected in the experiment, varies by an order of magnitude or more across the detector. Even for the most heavily damaged channels, the signal-to-noise ratio for a MIP signal remains above 5. This study provides a realistic test of the system's performance under irradiation. It complements previous SiPM-specific irradiation studies and will inform the future operation of the ZDC and other detectors that use SiPM-on-tile technology.
format Preprint
id arxiv_https___arxiv_org_abs_2512_20852
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Calibration of an Irradiated Prototype for the EIC Zero-Degree Calorimeter
Zhang, Weibin
Liang, Xilin
Preins, Sean
Arratia, Miguel
Instrumentation and Detectors
Nuclear Experiment
We study the response of a prototype Zero-Degree Calorimeter (ZDC) detector to irradiation equivalent to 10$^{11}$ 1-MeV $n_{\text{eq}}/\text{cm}^{2}$, which matches the expected exposure after one year of operation at full nominal luminosity at the future Electron-Ion Collider (EIC). The prototype, which consists of 563 channels and represents about 10 percent of the final ZDC design in terms of both channel count and detector volume, was irradiated at the NASA Space Radiation Laboratory (NSRL) at Brookhaven National Laboratory (BNL) with proton beams. We demonstrate that, despite significant radiation damage to the SiPMs and non-uniform degradation across the detector volume, the detector can be successfully calibrated on a channel-by-channel basis using cosmic-ray data. The damage profile, similar to what is expected in the experiment, varies by an order of magnitude or more across the detector. Even for the most heavily damaged channels, the signal-to-noise ratio for a MIP signal remains above 5. This study provides a realistic test of the system's performance under irradiation. It complements previous SiPM-specific irradiation studies and will inform the future operation of the ZDC and other detectors that use SiPM-on-tile technology.
title Calibration of an Irradiated Prototype for the EIC Zero-Degree Calorimeter
topic Instrumentation and Detectors
Nuclear Experiment
url https://arxiv.org/abs/2512.20852