Paper |
Title |
Page |
TUPRB053 |
Injector Physics Design at SHINE |
1801 |
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- Z. Wang, M.H. Zhao
SINAP, Shanghai, People’s Republic of China
- Q. Gu
SSRF, Shanghai, People’s Republic of China
- G.L. Wang
DICP, Dalian, People’s Republic of China
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As a CW x-ray free electron laser facility, SHINE has a high requirement on the electron beam quality in the linac, as well as in the injector. SHINE injector consists of a 162.5 MHz normal conducting VHF gun, a NC 1.3 GHz RF buncher, a one cavity SC cryomodule, an eight cavity SC cryomodule and 3 solenoids along the injector layout. Some beam diagnostic element are inserted in the layout as well. In this paper, we try to introduce the injector physics design at shine.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-IPAC2019-TUPRB053
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About • |
paper received ※ 15 May 2019 paper accepted ※ 20 May 2019 issue date ※ 21 June 2019 |
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THPRB049 |
MODELING AND SIMULATION FOR MULTI-FEEDING CAVITY WITHOUT BEAM LOADING |
3921 |
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- K. Liu, Q. Gu, L. Li, Ch. Wang, M.H. Zhao
SINAP, Shanghai, People’s Republic of China
- Q. Gu
SSRF, Shanghai, People’s Republic of China
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The Multi-feeding cavity usually be applied in super-conducting and normal-conducting RF cavity. The differences between multiple input couplers in coupler coefficient, incident power and phase will cause the cavity field stabilities can not meet the requirements. For explore the influences of these differences and develop equations for measurement, a multi-feeding LCR transient model was developed. As two-feeding cavity, the VHF photocathode electron gun was model and simulated in this paper.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-IPAC2019-THPRB049
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|
About • |
paper received ※ 06 May 2019 paper accepted ※ 22 May 2019 issue date ※ 21 June 2019 |
|
Export • |
reference for this paper using
※ BibTeX,
※ LaTeX,
※ Text/Word,
※ RIS,
※ EndNote (xml)
|
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