DocumentCode :
585040
Title :
Propagation of neutralized plasma beams
Author :
Wessel, F.J. ; Song, J.J. ; Rahman, H.U. ; Yur, G. ; Rostoker, N. ; White, R.S.
Author_Institution :
Phys. Dept., Univ. of California, Irvine, Irvine, CA, USA
fYear :
1990
fDate :
2-5 July 1990
Firstpage :
555
Lastpage :
566
Abstract :
Beams of charge- and current-neutralized plasma will cross a transverse-magnetic field by a combination of collective-plasma processes. These processes were studied for a high -to-low beta (β ≡ plasma energy density/magnetic field energy density) hydrogen-plasma beam injected into a vacuum transverse magnetic field with nominal parameters: Ti ≈ 1 eV, Te ≈ 5 eV, n ≤ 1014 cm-3, vi ≤ 9 × 106 cm/s, tpulse <; 60; 70 μs, Bz ≤ 300 G. Plasma characteristics were measured for a wide beam, a/ρi ≤ 35, and a downstream distance, x ≤ 300 ρi, where a is the beam radius, x is the downstream distance, and ρi is the ion gyroradius. A brief state of initial diamagnetic propagation is observed, followed by a rapid transition to E×B propagation. E×B propagation is accompanied by beam compression transverse to B. with as much as a factor of four increase in density and a slight drift of the beam in the ion Lorentz force direction. As the magnetic field increases, the observed magnetization time decreases from that calculated using classical Spitzer conductivity, approaching an order of magnitude. This rapid magnetization can be accounted for using classical Hall conductivity, rather than invoking anomalous processes or instabilities to calculate the magnetization time.
Keywords :
magnetisation; plasma density; plasma magnetohydrodynamics; ExB propagation; classical Hall conductivity; classical Spitzer conductivity; collective-plasma processes; electron volt energy 1 eV; electron volt energy 5 eV; high-to-low beta; initial diamagnetic propagation; injected hydrogen-plasma beam; ion Lorentz force direction; ion gyroradius; neutralized plasma beams propagation; transverse-magnetic field; vacuum transverse magnetic field; Apertures; Laser beams; Magnetic field measurement; Magnetic fields; Particle beams; Plasmas; Probes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High-Power Particle Beams, 1990 8th International Conference on
Conference_Location :
Novosibirsk
Print_ISBN :
9.7898102055e+012
Type :
conf
Filename :
6396324
Link To Document :
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