PROPAGATION OF A WIDE ION-BEAM INTO A MAGNETIC BARRIER

被引:27
作者
PETER, W
RON, A
ROSTOKER, N
机构
[1] Physics Department, University of California, Irvine
[2] Technion - Israel Institute of Technology, Haifa
关键词
D O I
10.1063/1.862757
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
A fully relativistic and self-consistent Vlasov equilibrium model is presented and solved for the general problem of the motion of a neutralized ion beam in a transverse magnetic field. The radius of the beam is taken to be much larger than any characteristic length of the system so that the model is, in effect, one-dimensional. The beam has density n0 and velocity υ0 and enters a vacuous region with an externally applied transverse magnetic field B0. It is found that the distance that the ions penetrate into the barrier is determined primarily by the longitudinal electric field produced by the electrons, so that their penetration length is much less than the ion gyroradius. In the case υ0 2/c2 ≪m/M - B02/16πn 0Mc2 the model equations can be solved analytically. In this case the injected plasma is quasi-neutral and the ions closely follow the electrons. The penetration length of the plasma is then the geometric mean of the electron and ion gyroradii due to the magnetic field Bc = (B 02, + 16πn0Mυ0 2)1/2. A discussion of the numerical results is included. © 1979 American Institute of Physics.
引用
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页码:1471 / 1477
页数:7
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