DocumentCode
865183
Title
Internal dynamics of a plasma propelled across a magnetic field
Author
Buneman, Oscar
Author_Institution
Star Lab., Stanford Univ., CA, USA
Volume
20
Issue
6
fYear
1992
fDate
12/1/1992 12:00:00 AM
Firstpage
672
Lastpage
677
Abstract
When a plasma is pushed across a magnetic field by some nonelectromagnetic force, ions and electrons get turned in opposite directions by the magnetic field. This creates an internal current as well as sheaths at the plasma surfaces and results in an electric field which allows the plasma to maintain some, or even most of its initial momentum in the form of E &oarr;×B &oarr; drift. An exact analysis of that process is presented for the internal region of the plasma. The energy provided by the initial push is used, in part, to create some gyrations inside the plasma. When the rest energy density of the plasma exceeds twice the magnetic energy density (or when the Alfven speed is less than c ), there will be enough energy to spare for the plasma to continue across the magnetic field at half its initial momentum. Two cases are considered: an impulsive start and a gentle push such as provided by gravity. The amplitude of the resulting internal gyrations becomes small in the second case. The frequencies of the gyrations are those of extraordinary modes of very long spatial wavelength
Keywords
magnetic fields; plasma flow; plasma sheaths; plasma transport processes; Alfven speed; E×B drift; electric field; extraordinary modes; gentle push; gravity; gyration frequency; gyrations; impulsive start; initial momentum; internal current; internal gyrations; magnetic energy density; magnetic field; nonelectromagnetic force; plasma internal dynamics; plasma propulsion; plasma surfaces; rest energy density; sheaths; spatial wavelength; Electrons; Gravity; Magnetic analysis; Magnetic fields; Plasma accelerators; Plasma density; Plasma sheaths; Plasma waves; Polarization; Propulsion;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.199513
Filename
199513
Link To Document