Published 2000 | Version v1
Journal article

Generation of electromagnetic waves and Alfven waves during coalescence of magnetic islands in pair plasmas

  • 1. Toyama Univ., Gofuku (Japan). Lab. for Plasma Astrophys.
  • 2. Danish Meteorological Inst., Copenhagen (Denmark)

Description

It is shown by using a 2-D fully relativistic electromagnetic particle-in-cell (PIC) code that the tearing instability in a current sheet of pair plasmas is caused by Landau resonances of both electrons and positrons. Strong magnetic flux can be generated during coalescence of magnetic islands in the nonlinear phase of the tearing instability. The magnetic flux produced in an O-type magnetic island is caused from the counter-streaming instability found by Kazimura et al. (1998). It is also shown that charge separation with a quadrupole-like structure is generated from the localized strong magnetic flux. During the decay of the quadrupole-like charge structure as well as the magnetic flux, there appear wave emission with high-frequency electromagnetic waves and Alfven waves as well as Langmuir waves. We also show by using a 3-D PIC code that current filaments associated with the O-type magnetic islands become unstable against the kink instability during the coalescence of current filaments. (orig.)

Additional details

Publishing Information

Journal Title
Physica Scripta. T
Journal Volume
84
Journal Page Range
p. 42-46
ISSN
0281-1847

Conference

Title
International topical conference on plasma physics - new frontiers of nonlinear sciences
Acronym
ITCPP '99
Dates
6-10 Sep 1999
Place
Faro (Portugal)

INIS

Country of Publication
United Kingdom
Country of Input or Organization
Sweden
INIS RN
31027673
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ALFVEN WAVES; ELECTROMAGNETIC RADIATION; KINK INSTABILITY; LANGMUIR PROBE; MAGNETIC FLUX; PLASMA SIMULATION; TEARING INSTABILITY; WAVE PROPAGATION
Descriptors DEC
ELECTRIC PROBES; HYDROMAGNETIC WAVES; INSTABILITY; PLASMA INSTABILITY; PLASMA MACROINSTABILITIES; PROBES; RADIATIONS; SIMULATION

Optional Information

Notes
11 refs.