Analytical and Numerical Studies of the Complex Interaction of a Fast Ion Beam Pulse with a Background Plasma | |
Kaganovich, Igor D. ; Startsev, Edward A. ; Davidson, Ronald C. | |
Princeton University. Plasma Physics Laboratory. | |
关键词: 70 Plasma Physics And Fusion Technology; Ionization And Recombination; Electrons; Ion Beams; Heavy Ions; | |
DOI : 10.2172/820212 RP-ID : PPPL-3909 RP-ID : AC02-76CH03073 RP-ID : 820212 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
Plasma neutralization of an intense ion beam pulse is of interest for many applications, including plasma lenses, heavy ion fusion, high energy physics, etc. Comprehensive analytical, numerical, and experimental studies are underway to investigate the complex interaction of a fast ion beam with a background plasma. The positively charged ion beam attracts plasma electrons, and as a result the plasma electrons have a tendency to neutralize the beam charge and current. A suite of particle-in-cell codes has been developed to study the propagation of an ion beam pulse through the background plasma. For quasi-steady-state propagation of the ion beam pulse, an analytical theory has been developed using the assumption of long charge bunches and conservation of generalized vorticity. The analytical results agree well with the results of the numerical simulations. The visualization of the data obtained in the numerical simulations shows complex collective phenomena during beam entry into and ex it from the plasma.
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