T. Kaneko et al., POTENTIAL FORMATION DUE TO ECR UNDER MIRROR CONFIGURATIONS OF MAGNETIC-FIELD, Plasma physics and controlled fusion, 39(5A), 1997, pp. 129-136
Plasma potential formation is investigated in a fully ionized collisio
nless plasma flow in the presence of an electron cyclotron resonance (
ECR) point under simple mirror configurations of magnetic field. When
ECR takes place at the magnetic-well bottom, a potential structure is
observed to consist of ct negative potential depression around the ECR
point and a subsequent positive potential peak. This potential struct
ure gradually collapses in the timescale determined by the ion-how spe
ed. In the case of a converging magnetic field, such a potential struc
ture is observed to persist in the steady state, when the ECR point is
located in the region of good magnetic-field curvature. However, this
structure is formed only transiently when the ECR point is located in
the region of bad magnetic-field curvature. When ECR takes place in a
diverging magnetic field, on the other hand, there appears a strong p
otential drop along the field lines, which results from a field-aligne
d electron acceleration, being accompanied by an effective ion acceler
ation.