Published February 1, 1991 | Version v1
Journal article

Inhomogeneity and Nonlinearity effects on stop bands of Alfvenic ion cyclotron waves in multicomponent plasma

  • 1. Inst. of the Physics of the Earth, Moscow (USSR)
  • 2. Univ. of Oulu (Finland)

Description

The authors study the existence of stop bands for left-handed Alfvenic ion cyclotron waves propagating in the direction of magnetic field in a multicomponent plasma. Three effects are discussed: finite ion temperature, inhomogeneous magnetic field, and nonlinear wave amplitude. All of them affect the existence of stop bands and set critical bounds on the relevant physical parameters, particularly on the density of heavy ions. Using the model of a linearly varying, longitudinally inhomogeneous magnetic field, they calculate the critical lower bound on heavy ion density as a function of longitudinal inhomogeneity, and they discuss the difference between the truly inhomogeneous and essentially homogeneous situations. Typical values for the wave vector in the resonance region are derived. They also find the upper bound on the wave amplitude for the linear theory to be applicable, and the authors derive the condition for stop band formation in the nonlinear case. The obtained results are applied to the magnetospheric environment and are shown to lead to relevant modifications. For example, the formation of stop bands by thermal heavy ions is strongly dependent on the local inhomogeneity of the magnetic field

Additional details

Publishing Information

Journal Title
Journal of Geophysical Research
Journal Volume
96
Journal Issue
A2
Series
J. Geophys. Res.
Journal Page Range
1767-1773
ISSN
0148-0227
CODEN
JGREA

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
22089325
Subject category
S58: GEOSCIENCES;
Descriptors DEI
ALFVEN WAVES; AMPLITUDES; EARTH MAGNETOSPHERE; ION DENSITY; ION TEMPERATURE; MAGNETIC FIELDS; MATHEMATICAL MODELS; MODIFICATIONS; NONLINEAR PROBLEMS; PLASMA; WAVE PROPAGATION
Descriptors DEC
EARTH ATMOSPHERE; HYDROMAGNETIC WAVES