Evaluation of radiative depolarization in the future Circular Electron-Positron Collider

Fuente: arXiv
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Main Authors: Xia, Wenhao, Duan, Zhe, Barber, Desmond P., Wang, Yiwei, Wang, Bin, Gao, Jie
Format: Preprint
Published: 2022
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_version_ 1866910296646352896
author Xia, Wenhao
Duan, Zhe
Barber, Desmond P.
Wang, Yiwei
Wang, Bin
Gao, Jie
author_facet Xia, Wenhao
Duan, Zhe
Barber, Desmond P.
Wang, Yiwei
Wang, Bin
Gao, Jie
contents Polarized lepton beams are an important aspect in the design of the future 100 km-scale Circular Electron-Positron Collider (CEPC). Precision beam energy calibration using resonant depolarization, as well as longitudinally polarized colliding beams are being actively investigated. The achievable beam polarization level for various beam energies and application scenarios depends on the radiative depolarization in the collider rings. In this paper the radiative depolarization effects are evaluated for a CEPC collider ring lattice with detailed machine imperfections and corrections. Simulations with the SLIM and Monte-Carlo approaches using the Bmad/PTC codes are compared with the theory of the effects of spin diffusion for ultra-high beam energies and the validity of the theories is thereby addressed. The paper concludes with a summary and suggestions for further investigations.
format Preprint
id arxiv_https___arxiv_org_abs_2204_12718
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Evaluation of radiative depolarization in the future Circular Electron-Positron Collider
Xia, Wenhao
Duan, Zhe
Barber, Desmond P.
Wang, Yiwei
Wang, Bin
Gao, Jie
Accelerator Physics
Polarized lepton beams are an important aspect in the design of the future 100 km-scale Circular Electron-Positron Collider (CEPC). Precision beam energy calibration using resonant depolarization, as well as longitudinally polarized colliding beams are being actively investigated. The achievable beam polarization level for various beam energies and application scenarios depends on the radiative depolarization in the collider rings. In this paper the radiative depolarization effects are evaluated for a CEPC collider ring lattice with detailed machine imperfections and corrections. Simulations with the SLIM and Monte-Carlo approaches using the Bmad/PTC codes are compared with the theory of the effects of spin diffusion for ultra-high beam energies and the validity of the theories is thereby addressed. The paper concludes with a summary and suggestions for further investigations.
title Evaluation of radiative depolarization in the future Circular Electron-Positron Collider
topic Accelerator Physics
url https://arxiv.org/abs/2204.12718