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Equilibrium electron beam parameters of the High Energy Photon Source

Haisheng Xu, Cai Meng, Yuemei Peng, Saike Tian, Na Wang, Xiaohao Cui, Chongchong Du, Z. H. Duan, Yuanyuan Guo, Ping He, Xiyang Huang, Daheng Ji, Hongfei Ji, Yi Jiao, Jingyi Li, Nan Li, Xiaoyu Li, Xiaohan Lu, Pengfei Liang, Weimin Pan, Huamin Qu, Bin Wang, Jiuqing Wang, Yuanyuan Wei, Jinyu Wan, Gang Xu, Fang Yan, Chenghui Yu, Sen Yue, Xiang Zhang, Yaliang Zhao

2023Radiation Detection Technology and Methods24 citationsDOIOpen Access PDF

Abstract

Abstract Purpose The physics design of the High Energy Photon Source (HEPS) was finished after many times of iteration. Hereby, the typical equilibrium electron beam parameters corresponding to the proposed two baseline operation modes in the baseline design of HEPS are presented. Methods To compute the equilibrium parameters of the electron beam, the lattice parameters, RF parameters, and the parameters of the insertion devices (IDs) were determined first. Furthermore, it is more precise to use the full-current electron beam parameters in the estimations of the performance of the synchrotron light. Therefore, not only the single-particle dynamics but also the current-dependent collective effects need to be considered in the computations of the full-current, equilibrium parameters of the electron beam. Both analytic computations and multi-particle tracking simulations were carried out. Results The full-current, equilibrium parameters of the electron beams in the HEPS storage ring are presented in this paper. Moreover, the main beam parameters in the injector (the booster and the LINAC), corresponding to the two baseline operation modes of the storage ring, are also presented. Conclusion The typical electron beam parameters corresponding to the two baseline operation modes are given in detail in this paper.

Topics & Concepts

Beam (structure)ElectronStorage ringCathode rayPhysicsInjectorComputationSynchrotronAtomic physicsLinear particle acceleratorComputational physicsElectron coolingBeam energyParticle acceleratorOpticsNuclear physicsComputer scienceThermodynamicsAlgorithmParticle Accelerators and Free-Electron LasersParticle accelerators and beam dynamicsAdvanced X-ray Imaging Techniques
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