The role of second kind collisions (skc) in affecting the electron energy distribution function (eedf) is discussed in the light of old and new results. Different non-equilibrium situations are presented including low pressure and atmospheric plasmas. Special attention is devoted to the post-discharge conditions when the decay of electron temperature is such as to emphasize the role of skc in structuring the eedf. Finally, results for parallel plate reactors obtained by including self-consistent kinetics in a particle in cell with Monte Carlo collisions approach and 1D high enthalpy flows for aerospace applications are presented and discussed
Strong deviations from Maxwellian equilibrium of the electron energy distribution function (EEDF) ar...
Describing non-equilibrium "cold" plasmas through a chemical physics approach, this book uses the st...
Inductive plasmas are simulated by using a one-dimensional particle-in-cell simulation including Mon...
The role of second kind collisions (skc) in affecting the electron energy distribution function (ee...
The electron energy distribution function(EEDF) in a low-pressure inductively coupled plasma confine...
Electron energy distributions upstream of a current-free double layer (CFDL) contained in a low-coll...
The role of inelastic collisions in Hall thruster operation is studied through simulation of the ele...
International audienceA model for electrons in partially ionized plasmas that self-consistently capt...
Abstract—Nonequilibrium effects associated with spatial and temporal nonlocality between electron en...
To establish the electron energy distribution function (EEDF), the second derivative of a Langmuir p...
We have studied energy distribution of fast electrons passing through a highly compressed core plasm...
The relaxation of the electron energy distribution function (edf) in N 2 post discharge regime has b...
When the fractional ionization of a plasma exceeds 10$\sp{-5}- 10\sp{-4}$, electron-electron (e-e) c...
Electron temperature is reconsidered for weakly-ionized oxygen and nitrogen plasmas with its dischar...
Reliable calculations of the electron/ion energy losses in low-pressure thermally nonequilibrium low...
Strong deviations from Maxwellian equilibrium of the electron energy distribution function (EEDF) ar...
Describing non-equilibrium "cold" plasmas through a chemical physics approach, this book uses the st...
Inductive plasmas are simulated by using a one-dimensional particle-in-cell simulation including Mon...
The role of second kind collisions (skc) in affecting the electron energy distribution function (ee...
The electron energy distribution function(EEDF) in a low-pressure inductively coupled plasma confine...
Electron energy distributions upstream of a current-free double layer (CFDL) contained in a low-coll...
The role of inelastic collisions in Hall thruster operation is studied through simulation of the ele...
International audienceA model for electrons in partially ionized plasmas that self-consistently capt...
Abstract—Nonequilibrium effects associated with spatial and temporal nonlocality between electron en...
To establish the electron energy distribution function (EEDF), the second derivative of a Langmuir p...
We have studied energy distribution of fast electrons passing through a highly compressed core plasm...
The relaxation of the electron energy distribution function (edf) in N 2 post discharge regime has b...
When the fractional ionization of a plasma exceeds 10$\sp{-5}- 10\sp{-4}$, electron-electron (e-e) c...
Electron temperature is reconsidered for weakly-ionized oxygen and nitrogen plasmas with its dischar...
Reliable calculations of the electron/ion energy losses in low-pressure thermally nonequilibrium low...
Strong deviations from Maxwellian equilibrium of the electron energy distribution function (EEDF) ar...
Describing non-equilibrium "cold" plasmas through a chemical physics approach, this book uses the st...
Inductive plasmas are simulated by using a one-dimensional particle-in-cell simulation including Mon...