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High energy beam energy measurement with microwave-electron Compton backscattering

High Energy Physics - Experiment 2023-02-27 v2 High Energy Physics - Phenomenology

Abstract

The uncertainty of the energy measurement of the electron beam on circular electron positron collider (CEPC) must be smaller than 10MeV\mathrm{MeV} to make sure the accurate measurement of the mass of the Higgs boson. In order to simplify the energy measurement system, a new method is proposed by fitting the Compton edge of the energy distribution of the gamma ray from a microwave-electron Compton scattering. With our method, the uncertainty of the energy measurement is 6MeV\mathrm{MeV} for the electron energy of 120GeV120\mathrm{GeV} in the Higgs mode. In this system, the energy resolution of the gamma detection needs to reach 10410^{-4}. Therefore, only the high-purity germanium (HPGe) detector can meet the critical requirement. In a head-on collision mode, the initial photons should be microwave photons with the wavelength of 3.04 centimeters. A cylindrical resonant cavity with selected TM010{TM_{010}} mode is used to transmit microwaves. After the microwave-electron Compton backscattering, the scattered photons and the synchrotron-radiation background transmit a shielding structure and then are detected by a HPGe detector at the end of the beam line of the synchrotron-radiation applications. The hole radius in the side wall of the cavity is about 1.5mm1.5\mathrm{mm} to allow the electron beam passing through. The results of the computer simulation technology (CST) software shows that the influence of the hole radius on the cavity field is negligible. The change of the resonance frequency can be easily corrected by fine-tuning the cavity size.

Keywords

Cite

@article{arxiv.2108.09707,
  title  = {High energy beam energy measurement with microwave-electron Compton backscattering},
  author = {Meiyu Si and Yongsheng Huang and Shanhong Chen and Pengcheng Wang and Zhe Duan and Xiaofei Lan and Yuan Chen and Xinchou Lou and Manqi Ruan and Yiwei Wang and Guangyi Tang and Ouzheng Xiao and Jianyong Zhang},
  journal= {arXiv preprint arXiv:2108.09707},
  year   = {2023}
}

Comments

22 pages, 12 figures

R2 v1 2026-06-24T05:19:11.815Z