Nonlinear Wave Dynamics in Two Temperature Electron-Positron-Ion Plasma
arXiv:astro-ph/9810180 · doi:10.1023/A:1000406310526
Abstract
The hot electron-positron unmagnetized plasma with small fraction of cold electron-ion plasma is investigated. The modulational interactions of the electromagnetic waves and the electron-sound waves are studied. The possibility of soliton formation is investigated.
10 pages, latex
Cited by in corpus (14)
- Wave Localization and Density Bunching in Pair Ion Plasmas
- Asymmetry-Driven Structure Formation in Pair Plasmas
- Stable Optical Vortex Solitons in Pair Plasmas
- Nonlinear Coupling of Electromagnetic and Electron Acoustic Waves in Multi-Species Degenerate Astrophysical Plasma
- Spin-electron-acoustic waves and solitons in high-density degenerate relativistic plasmas
- Nonlinear Coupling of Electromagnetic and Spin-Electron-Acoustic Waves in Spin-polarized Degenerate Relativistic Astrophysical Plasma
- On the structure of relativistic hydrodynamics for hot plasmas
- Microscopic model for relativistic hydrodynamics of ideal plasmas
- Waves propagating parallel to the magnetic field in relativistically hot plasmas: A hydrodynamic model
- NLSE for quantum plasmas with the radiation damping
- A hydrodynamic model of Alfvenic waves and fast magneto-sound in the relativistically hot plasmas at propagation parallel to the magnetic field
- Relaxation of a Two Electron-Temperature Relativistic Hot Electron-Positron-Ion Plasma
- Anisotropic pressure effects in hydrodynamic description of waves propagating parallel to the magnetic field in relativistically hot plasmas
- On a hydrodynamic description of waves propagating perpendicular to the magnetic field in relativistically hot plasmas