Javascript must be enabled to continue!
Ion acoustic solitary waves and double layers in a plasma with two temperature electrons featuring Tsallis distribution
View through CrossRef
The propagation properties of large amplitude ion acoustic solitary waves (IASWs) are studied in a plasma containing cold fluid ions and multi-temperature electrons (cool and hot electrons) with nonextensive distribution. Employing Sagdeev pseudopotential method, an energy balance equation has been derived and from the expression for Sagdeev potential function, ion acoustic solitary waves and double layers are investigated numerically. The Mach number (lower and upper limits) for the existence of solitary structures is determined. Positive as well as negative polarity solitary structures are observed. Further, conditions for the existence of ion acoustic double layers (IADLs) are also determined numerically in the form of the critical values of qc, f and the Mach number (M). It is observed that the nonextensivity of electrons (via qc,h), concentration of electrons (via f) and temperature ratio of cold to hot electrons (via β) significantly influence the characteristics of ion acoustic solitary waves as well as double layers.
Title: Ion acoustic solitary waves and double layers in a plasma with two temperature electrons featuring Tsallis distribution
Description:
The propagation properties of large amplitude ion acoustic solitary waves (IASWs) are studied in a plasma containing cold fluid ions and multi-temperature electrons (cool and hot electrons) with nonextensive distribution.
Employing Sagdeev pseudopotential method, an energy balance equation has been derived and from the expression for Sagdeev potential function, ion acoustic solitary waves and double layers are investigated numerically.
The Mach number (lower and upper limits) for the existence of solitary structures is determined.
Positive as well as negative polarity solitary structures are observed.
Further, conditions for the existence of ion acoustic double layers (IADLs) are also determined numerically in the form of the critical values of qc, f and the Mach number (M).
It is observed that the nonextensivity of electrons (via qc,h), concentration of electrons (via f) and temperature ratio of cold to hot electrons (via β) significantly influence the characteristics of ion acoustic solitary waves as well as double layers.
Related Results
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
(English) Spacecraft entering planetary atmospheres are enveloped by a plasma layer with high levels of ionization, caused by the extreme temperatures in the shock layer. The charg...
Information theoretical properties of Tsallis entropies
Information theoretical properties of Tsallis entropies
A chain rule and a subadditivity for the entropy of type β, which is one of the nonadditive entropies, were derived by Daróczy. In this paper, we study the further relations among ...
Nanophotonics with charged particles
Nanophotonics with charged particles
(English) Among the fundamental constituents of matter, charged particles such electrons and positrons are leading protagonists in physical phenomena associated with small (~ meV) ...
Statistical Properties of Exohiss Waves and Associated Scattering Losses of Radiation Belt Electrons
Statistical Properties of Exohiss Waves and Associated Scattering Losses of Radiation Belt Electrons
Exohiss waves are a type of structureless whistler‐mode waves that exist in the low density plasmatrough outside the plasmapause and may potentially perturb the motions o...
Effect of wall secondary electron distribution function on the characteristics of stable sheath near a dielectric wall
Effect of wall secondary electron distribution function on the characteristics of stable sheath near a dielectric wall
It is widely known that the energy distribution of secondary electrons induced by a single-energy electron beam presents typical bimodal configuration. However, the total velocity ...
Bayesian filtering for incoherent scatter radar analysis
Bayesian filtering for incoherent scatter radar analysis
<p>Electron precipitation and ion frictional heating events cause rapid variations in electron temperature, ion temperature and F1 region ion composition of the high-...
Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Dusty plasma is a multi-particle system of dust particles suspended in plasma, which is generally composed of free electrons, ions, and dust particles. It is widely found in natura...
Vertical plasma drifts in magnetically controlled ionosphere of Mars 
Vertical plasma drifts in magnetically controlled ionosphere of Mars 
<p>Our focus in this paper is to explain the electron density (N<sub>e</sub>) profiles measured over the Martian high-latitude region by t...


