Linear and nonlinear ion-acoustic waves are studied in a fluid model for nonrelativistic, unmagnetized quantum plasma with electrons with an arbitrary degeneracy degree. The equation of state for electrons follows from a local Fermi-Dirac distribution function and applies equally well both to fully degenerate and classical, nondegenerate limits. Ions are assumed to be cold. Quantum diffraction effects through the Bohm potential are also taken into account. A general coupling parameter valid for dilute and dense plasmas is proposed. The linear dispersion relation of the ion-acoustic waves is obtained and the ion-acoustic speed is discussed for the limiting cases of extremely dense or dilute systems. In the long-wavelength limit, the results ...
A general quantum dispersion equation for electron-positron(hole)-ion quantum plasmas is d...
The study of waves and instabilities in quantum plasmas is of fundamental importance for understandi...
Nonlinear solitary structures of electron plasma waves have been investigated by using nonlinear qua...
Linear and nonlinear ion-acoustic waves are studied in a fluid model for nonrelativistic, unmagnetiz...
Nonlinear ion-acoustic waves are analyzed in a nonrelativistic magnetized quantum plasma with arbitr...
Using the quantum hydrodynamic (QHD) model the nonlinear properties of ion-acoustic waves in are lat...
A model for nonlinear ion waves in an unmagnetized plasma with relativistically degenerate electrons...
Nonlinear ion-acoustic cnoidal wave structures are studied in an unmagnetized quantum plasma. Using ...
Using the quantum hydrodynamic (QHD) model both the linear and nonlinear behavior of ion-acoustic wa...
The dynamics of linear and nonlinear ionic-scale electrostatic excitations propagating in a magnetiz...
Fully nonlinear propagation of ion-acoustic solitary waves in a collisionless dense/quantum electron...
A theory for dressed quantum ion acoustic waves (QIAWs), which includes higher-order corrections whe...
Obliquely propagating ion-acoustic solitons in a magnetized plasma consisting of warm adiabatic ions...
The primary purpose of this dissertation is to study the nonlinear screening effect of electrostatic...
Using a two-species quantum hydrodynamic model, we derive the quantum counterpart of magnetosonic wa...
A general quantum dispersion equation for electron-positron(hole)-ion quantum plasmas is d...
The study of waves and instabilities in quantum plasmas is of fundamental importance for understandi...
Nonlinear solitary structures of electron plasma waves have been investigated by using nonlinear qua...
Linear and nonlinear ion-acoustic waves are studied in a fluid model for nonrelativistic, unmagnetiz...
Nonlinear ion-acoustic waves are analyzed in a nonrelativistic magnetized quantum plasma with arbitr...
Using the quantum hydrodynamic (QHD) model the nonlinear properties of ion-acoustic waves in are lat...
A model for nonlinear ion waves in an unmagnetized plasma with relativistically degenerate electrons...
Nonlinear ion-acoustic cnoidal wave structures are studied in an unmagnetized quantum plasma. Using ...
Using the quantum hydrodynamic (QHD) model both the linear and nonlinear behavior of ion-acoustic wa...
The dynamics of linear and nonlinear ionic-scale electrostatic excitations propagating in a magnetiz...
Fully nonlinear propagation of ion-acoustic solitary waves in a collisionless dense/quantum electron...
A theory for dressed quantum ion acoustic waves (QIAWs), which includes higher-order corrections whe...
Obliquely propagating ion-acoustic solitons in a magnetized plasma consisting of warm adiabatic ions...
The primary purpose of this dissertation is to study the nonlinear screening effect of electrostatic...
Using a two-species quantum hydrodynamic model, we derive the quantum counterpart of magnetosonic wa...
A general quantum dispersion equation for electron-positron(hole)-ion quantum plasmas is d...
The study of waves and instabilities in quantum plasmas is of fundamental importance for understandi...
Nonlinear solitary structures of electron plasma waves have been investigated by using nonlinear qua...