Published July 1982 | Version v1
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Dielectric and permeability

Description

Using the unabridged Maxwell equations (including vectors D, E and H) new effects in collisionless plasmas are uncovered. In a steady state, it is found that spatially varying energy density of the electric field (E perpendicular) orthogonal to B produces electric current leading, under certain conditions, to the relationship P perpendicular+B(2)/8 pi-epsilon E perpendicular(2)/8 pi constant, where epsilon is the dielectric constant of the plasma for fields orthogonal to B. In steady state quasi-two-dimensional flows in plasmas, a general relationship between the components of electric field parallel and perpendicular to B is found. These effects are significant in goephysical and astrophysical plasmas. The general conditions for a steady state in collisionless plasma are deduced. With time variations in a plasma, slow compared to ion-gyroperiod, there is a general current, (j*), which includes the well-known polarisation current, given by J* d/dt (ExM)+(PxB)xB B(-2) where M and P are the magnetization and polarization vectors respectively

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS, PC A03/MF A01.

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Additional details

Publishing Information

Imprint Pagination
35 p.
Report number
N--8315127

Optional Information

Secondary number(s)
NASA-TM--84948.