Paper |
Title |
Page |
MOBH2 |
Status of HEPS Lattice Design and Physics Studies |
7 |
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- Y. Jiao, X. Cui, Z. Duan, Y.Y. Guo, D. Ji, J.L. Li, X.Y. Li, Y.M. Peng, Q. Qin, S.K. Tian, J.Q. Wang, N. Wang, Y. Wei, G. Xu, S.Y. Xu, F. Yan, C.H. Yu, Y.L. Zhao
IHEP, Beijing, People's Republic of China
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The High Energy Photon Source (HEPS) is a 6-GeV, kilometer-scale, ultralow-emittance storage ring light source to be built in Beijing, China. The HEPS is now under extensive design and study. In this report we will introduce the progress of the lattice design and related physics studies on HEPS, covering issues of storage ring design, booster design, injection design, collective effects, error study, insertion device effects, longitudinal dynamics, etc.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SAP2017-MOBH2
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MOPH05 |
Design Study of the HEPS Booster Design |
37 |
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- Y.M. Peng, Z. Duan, Y.Y. Guo, D. Ji, Y. Jiao, J.L. Li, C. Meng, S.K. Tian, G. Xu, H.S. Xu
IHEP, Beijing, People's Republic of China
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The High Energy Photon Source (HEPS) is a 6GeV ultra-low emittance light source proposed to be built in Beijing. It will utilise a full energy booster synchrotron operating at a frequency of 1Hz as its injector. For meeting the requirement of high charge when using swap-out mode, the booster need to have the ability of beam ac-cumulation. In this paper, a FODO lattice with 4 dispersion-free straight sections is presented.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SAP2017-MOPH05
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※ LaTeX,
※ Text/Word,
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※ EndNote (xml)
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