Design and Mechanical Integration of Scintillation Modules for SUB-Millicharge ExperimenT (SUBMET)

Fuente: arXiv
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Autori principali: Campagnari, Claudio, Cho, Sungwoong, Choi, Suyong, Chung, Seokju, Citron, Matthew, De Roeck, Albert, Gastal, Martin, Ha, Seungkyu, Haas, Andy, Hill, Christopher Scott, Hong, Byeong Jin, Hwang, Haeyun, Hwang, Insung, Jeong, Hoyong, Moon, Hyunki, Padmanaban, Jayashri, Schmitz, Ryan, Seo, Changhyun, Stuart, David, Won, Eunil, Yoo, Jae Hyeok, Yoo, Jinseok, Youssef, Ayman, Zaraket, Ahmad, Zaraket, Haitham
Natura: Preprint
Pubblicazione: 2025
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author Campagnari, Claudio
Cho, Sungwoong
Choi, Suyong
Chung, Seokju
Citron, Matthew
De Roeck, Albert
Gastal, Martin
Ha, Seungkyu
Haas, Andy
Hill, Christopher Scott
Hong, Byeong Jin
Hwang, Haeyun
Hwang, Insung
Jeong, Hoyong
Moon, Hyunki
Padmanaban, Jayashri
Schmitz, Ryan
Seo, Changhyun
Stuart, David
Won, Eunil
Yoo, Jae Hyeok
Yoo, Jinseok
Youssef, Ayman
Zaraket, Ahmad
Zaraket, Haitham
author_facet Campagnari, Claudio
Cho, Sungwoong
Choi, Suyong
Chung, Seokju
Citron, Matthew
De Roeck, Albert
Gastal, Martin
Ha, Seungkyu
Haas, Andy
Hill, Christopher Scott
Hong, Byeong Jin
Hwang, Haeyun
Hwang, Insung
Jeong, Hoyong
Moon, Hyunki
Padmanaban, Jayashri
Schmitz, Ryan
Seo, Changhyun
Stuart, David
Won, Eunil
Yoo, Jae Hyeok
Yoo, Jinseok
Youssef, Ayman
Zaraket, Ahmad
Zaraket, Haitham
contents We present a detailed description of the detector design for the SUB-Millicharge ExperimenT (SUBMET), developed to search for millicharged particles. The experiment probes a largely unexplored region of the charge-mass parameter space, focusing on particles with mass $m_χ< 1.6~\textrm{GeV}/c^2$ and electric charge $Q < 10^{-3}e$. The detector has been optimized to achieve high sensitivity to interactions of such particles while maintaining effective discrimination against background events. We provide a comprehensive overview of the key detector components, including scintillation modules, photomultiplier tubes, and the mechanical support structure.
format Preprint
id arxiv_https___arxiv_org_abs_2507_19311
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Design and Mechanical Integration of Scintillation Modules for SUB-Millicharge ExperimenT (SUBMET)
Campagnari, Claudio
Cho, Sungwoong
Choi, Suyong
Chung, Seokju
Citron, Matthew
De Roeck, Albert
Gastal, Martin
Ha, Seungkyu
Haas, Andy
Hill, Christopher Scott
Hong, Byeong Jin
Hwang, Haeyun
Hwang, Insung
Jeong, Hoyong
Moon, Hyunki
Padmanaban, Jayashri
Schmitz, Ryan
Seo, Changhyun
Stuart, David
Won, Eunil
Yoo, Jae Hyeok
Yoo, Jinseok
Youssef, Ayman
Zaraket, Ahmad
Zaraket, Haitham
Instrumentation and Detectors
High Energy Physics - Experiment
We present a detailed description of the detector design for the SUB-Millicharge ExperimenT (SUBMET), developed to search for millicharged particles. The experiment probes a largely unexplored region of the charge-mass parameter space, focusing on particles with mass $m_χ< 1.6~\textrm{GeV}/c^2$ and electric charge $Q < 10^{-3}e$. The detector has been optimized to achieve high sensitivity to interactions of such particles while maintaining effective discrimination against background events. We provide a comprehensive overview of the key detector components, including scintillation modules, photomultiplier tubes, and the mechanical support structure.
title Design and Mechanical Integration of Scintillation Modules for SUB-Millicharge ExperimenT (SUBMET)
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2507.19311