Large amplitude plasma oscillations are studied in a cold electron plasma. Using Lagrangian variables, a new class of exact analytical solutions is found. It turns out that the electric field amplitude is limited either by wave breaking or by the condition that the electron density always has to stay positive. The range of possible amplitudes is determined analytically
Bernstein-Kruskal-Greene (or BGK) modes are ubiquitous nonlinear solutions for the 1D electrostatic ...
Previously developed method for finding asymptotic solutions of Vlasov equations using two-dimension...
This thesis presents an analysis of radial waves in a helically structured cold plasma. The problem ...
The equations describing planar magnetoacoustic waves of permanent form in a cold plasma are rewritt...
The nonlinear 1-D plasma electrostatic oscillation is formulated in an analytic framework that allow...
A plasma, whether ”hot” or ”cold,” magnetized or unmagnetized, electrostatic or electromagnetic, exh...
It is shown that a constant external magnetic field, generally speaking, is not able to prevent brea...
Possibility of excitation of finite amplitude longitudinal waves in a collisionless and cold plasma ...
Some time ago, we found an exact solution for nonlinear cold-plasma oscillations against a periodic ...
We propose a new and effective method to find plasma oscillatory and wave modes. It implies searchin...
A collisional trapped non-neutral plasma is described by a hydrodynamical model in onedimensional ge...
A method for solving model nonlinear equations describing plasma oscillations in the presence of vis...
We determine the growth rate of linear instabilities resulting from long-wavelength transverse pertu...
The article of record as published may be found at http://dx.doi.org/10.1063/1.1665108USDO
The effect of electron collisions on reducing the wave-breaking amplitude of resonantly-driven elect...
Bernstein-Kruskal-Greene (or BGK) modes are ubiquitous nonlinear solutions for the 1D electrostatic ...
Previously developed method for finding asymptotic solutions of Vlasov equations using two-dimension...
This thesis presents an analysis of radial waves in a helically structured cold plasma. The problem ...
The equations describing planar magnetoacoustic waves of permanent form in a cold plasma are rewritt...
The nonlinear 1-D plasma electrostatic oscillation is formulated in an analytic framework that allow...
A plasma, whether ”hot” or ”cold,” magnetized or unmagnetized, electrostatic or electromagnetic, exh...
It is shown that a constant external magnetic field, generally speaking, is not able to prevent brea...
Possibility of excitation of finite amplitude longitudinal waves in a collisionless and cold plasma ...
Some time ago, we found an exact solution for nonlinear cold-plasma oscillations against a periodic ...
We propose a new and effective method to find plasma oscillatory and wave modes. It implies searchin...
A collisional trapped non-neutral plasma is described by a hydrodynamical model in onedimensional ge...
A method for solving model nonlinear equations describing plasma oscillations in the presence of vis...
We determine the growth rate of linear instabilities resulting from long-wavelength transverse pertu...
The article of record as published may be found at http://dx.doi.org/10.1063/1.1665108USDO
The effect of electron collisions on reducing the wave-breaking amplitude of resonantly-driven elect...
Bernstein-Kruskal-Greene (or BGK) modes are ubiquitous nonlinear solutions for the 1D electrostatic ...
Previously developed method for finding asymptotic solutions of Vlasov equations using two-dimension...
This thesis presents an analysis of radial waves in a helically structured cold plasma. The problem ...