The nonlinear evolution of ion acoustic fluctuations in the presence of a uniform electron drift which exceeds the sound speed and electron-ion collisions is investigated using a collisional particle simulation model for parameters relevant to laser-heated plasmas. The results indicate that for the one-dimensional case, strong electron-ion collisionality can lead to a significantly higher saturation level of the fluctuations, which is comparable to the saturation level in the two-dimensional collisionless regime. This relatively high turbulence level can act to enhance heat flux inhibition and strongly influence the absorption and transport properties of laser-produced plasmas
A simple model of ion fluctuations (ion acoustic and ion cyclotron fluctuations for example) driven...
The friction in multi-component plasmas is discussed, and its effects on ion acoustic (IA) and drift...
The effects of friction on the ion acoustic (IA) wave in fully and partially ionized plasmas are stu...
The return current instability of ion acoustic waves in a laser heated plasma is studied by means of...
In this thesis laser-plasma processes are studied at transport and ion time scales. In order to stud...
A fluid analysis is presented of the ion sound mode in a weakly ionized collisional plasma. The ion-...
The properties of the electron current/drift-driven ion acoustic mode propagating at an angle with r...
We investigate the linear and nonlinear evolution of the ion-acoustic instability in a collisionless...
The properties of a weakly ionized plasma with a high concentration of flowing neutrals are discusse...
Due to the complex electron dynamics and multiple ion acceleration mechanisms that can take place in...
We investigate the low-frequency wave mode associated with heavy particles and its instability in a ...
In plasmas with electron drift (current) relative to static ions, the ion acoustic wave is subject t...
In the presence of an electron drift relative to ions, the ion acoustic wave is subject to the kinet...
A kinetic model for the shock acceleration of ions in laser-produced plasmas is developed. A fractio...
Collisionless magnetic reconnection requires the violation of ideal MHD by various kinetic-scale eff...
A simple model of ion fluctuations (ion acoustic and ion cyclotron fluctuations for example) driven...
The friction in multi-component plasmas is discussed, and its effects on ion acoustic (IA) and drift...
The effects of friction on the ion acoustic (IA) wave in fully and partially ionized plasmas are stu...
The return current instability of ion acoustic waves in a laser heated plasma is studied by means of...
In this thesis laser-plasma processes are studied at transport and ion time scales. In order to stud...
A fluid analysis is presented of the ion sound mode in a weakly ionized collisional plasma. The ion-...
The properties of the electron current/drift-driven ion acoustic mode propagating at an angle with r...
We investigate the linear and nonlinear evolution of the ion-acoustic instability in a collisionless...
The properties of a weakly ionized plasma with a high concentration of flowing neutrals are discusse...
Due to the complex electron dynamics and multiple ion acceleration mechanisms that can take place in...
We investigate the low-frequency wave mode associated with heavy particles and its instability in a ...
In plasmas with electron drift (current) relative to static ions, the ion acoustic wave is subject t...
In the presence of an electron drift relative to ions, the ion acoustic wave is subject to the kinet...
A kinetic model for the shock acceleration of ions in laser-produced plasmas is developed. A fractio...
Collisionless magnetic reconnection requires the violation of ideal MHD by various kinetic-scale eff...
A simple model of ion fluctuations (ion acoustic and ion cyclotron fluctuations for example) driven...
The friction in multi-component plasmas is discussed, and its effects on ion acoustic (IA) and drift...
The effects of friction on the ion acoustic (IA) wave in fully and partially ionized plasmas are stu...