Paper |
Title |
Page |
MOPH10 |
The Beam Dynamics Simulation of an L-band Electron Gun using Genetic Algorithm |
47 |
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- P.L. Fan, X. He, J. Pang, L. Yang
CAEP/IFP, Mianyang, People's Republic of China
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The China Academy of Engineering Physics (CAEP) plans to build XFEL light source. In the beam dynamics simulation there are many parameters to be considered, so we need a high efficient method to find the optimal pa-rameters. Genetic algorithm (GA) [1] is wildly used as one kind of evolutionary algorithm and it can help us to find the optimal parameters in a shorter time. In this paper, we will use genetic algorithm to do the beam dynamics sim-ulation of an L-band electron gun used for the XFEL. We put emphasis on the optimization of the transverse nor-malized projected emittance and the relevant result will be given and discussed.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SAP2017-MOPH10
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MOPH22 |
Primary Design of 4 a S-band Linac using Slotted Iris Structure for Hom Damping |
76 |
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- J. Pang, S. Chen, X. He
CAEP/IFP, Mainyang, Sichuan, People's Republic of China
- S. Pei, H. Shi, J.R. Zhang
IHEP, Beijing, People's Republic of China
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A S-band LINAC with the operating frequency of 2856MHz and beam current of 4 A was designed for flash X-ray radiography for hydrodynamic test. The optimization of the parameters of the LINAC was processed to achieve the minimum beam radius and the proper energy efficiency. For the purpose of reducing the beam orbits offset at the exit of LINAC, a slotted iris accelerating structure would be employed to suppress the transverse Higher Order Modes (HOMs) by cutting four radial slots in the iris to couple the HOMs to SiC loads. In this paper, we present the design of the LINAC and the results of beam dynamic analysis.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-SAP2017-MOPH22
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Export • |
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