Preliminary design and simulation for CEPC fast luminosity monitor detector based on 4H-SiC

Fuente: arXiv
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Main Authors: Li, Yanpeng, Li, Meng, Wang, Xingrui, Song, Weimin, Zhang, Xiyuan, Wang, Congcong, Xiao, Suyu, Shi, Haoyu, Wang, Dou, Bambade, Philip, Shi, Xin
Format: Preprint
Published: 2025
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author Li, Yanpeng
Li, Meng
Wang, Xingrui
Song, Weimin
Zhang, Xiyuan
Wang, Congcong
Xiao, Suyu
Shi, Haoyu
Wang, Dou
Bambade, Philip
Shi, Xin
author_facet Li, Yanpeng
Li, Meng
Wang, Xingrui
Song, Weimin
Zhang, Xiyuan
Wang, Congcong
Xiao, Suyu
Shi, Haoyu
Wang, Dou
Bambade, Philip
Shi, Xin
contents The Circular Electron-Positron Collider (CEPC), a next-generation high-luminosity collider, employs a crab waist scheme to achieve ultrahigh $5 \times 10^{34} \, \text{cm}^{-2}\text{s}^{-1}$ luminosity at Higgs mode. Owing to the extremely small beam size, the luminosity is highly sensitive to the stability of final focusing elements, where mechanical vibrations (e.g. ground motion) may induce beam offsets and luminosity degradation. To address this, a luminosity-driven dithering system is implemented for horizontal beam stabilization. In this work, we develop an optimized 4H-SiC fast luminosity detector scheme using an array of radiation detectors with picosecond time resolution positioned at critical locations. By using self-development software RAdiation SEmiconductoR (RASER), we optimize the active area of the detector to achieve 2\% relative precision at 1~kHz. Furthermore, the Total Sample Current (TSC) exhibits a near-linear correlation with luminosity attenuation, enabling real-time luminosity monitoring.
format Preprint
id arxiv_https___arxiv_org_abs_2507_23368
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Preliminary design and simulation for CEPC fast luminosity monitor detector based on 4H-SiC
Li, Yanpeng
Li, Meng
Wang, Xingrui
Song, Weimin
Zhang, Xiyuan
Wang, Congcong
Xiao, Suyu
Shi, Haoyu
Wang, Dou
Bambade, Philip
Shi, Xin
High Energy Physics - Experiment
Instrumentation and Detectors
The Circular Electron-Positron Collider (CEPC), a next-generation high-luminosity collider, employs a crab waist scheme to achieve ultrahigh $5 \times 10^{34} \, \text{cm}^{-2}\text{s}^{-1}$ luminosity at Higgs mode. Owing to the extremely small beam size, the luminosity is highly sensitive to the stability of final focusing elements, where mechanical vibrations (e.g. ground motion) may induce beam offsets and luminosity degradation. To address this, a luminosity-driven dithering system is implemented for horizontal beam stabilization. In this work, we develop an optimized 4H-SiC fast luminosity detector scheme using an array of radiation detectors with picosecond time resolution positioned at critical locations. By using self-development software RAdiation SEmiconductoR (RASER), we optimize the active area of the detector to achieve 2\% relative precision at 1~kHz. Furthermore, the Total Sample Current (TSC) exhibits a near-linear correlation with luminosity attenuation, enabling real-time luminosity monitoring.
title Preliminary design and simulation for CEPC fast luminosity monitor detector based on 4H-SiC
topic High Energy Physics - Experiment
Instrumentation and Detectors
url https://arxiv.org/abs/2507.23368