Copyright @ 1979 CSIROA Monte Carlo simulation technique has been used to test the accuracy of electron energy distribution functions and transport coefficients calculated using conventional numerical solutions of Boltzmann's equation based on a two-term approximation. The tests have been applied to a number of model gases, some of which have characteristics close to those of real gases, and include cases where the scattering is anisotropic. The results show that, in general, previous application of the numerical solution to real gases has been valid
When electrons drift and diffuse through a gas under the influence of an electric field, the energy...
The quantum impulse approximation theory has been extended to the inelastic collision. The total ine...
Analytical representations of the elastic scattering cross sections of electrons with energies of 0....
At low reduced electric elds the electron energy distribution function in heavy noble gases can tak...
Abstract. In this paper we discuss the swarm physics based techniques including the Boltzmann equati...
The effect of inelastic collisions between two molecules on the solution of the Boltzmannequation is...
In this paper we discuss the swarm physics based techniques including the Boltzmann equation analysi...
An efficient algorithm to calculate the contribution of electron–electron collisions in the Boltzman...
The Boltzmann equation for an electron gas in a semiconductor is considered. The electron energy is ...
An efficient algorithm to calculate the contribution of electron–electron collisions in the Boltzman...
A numerical technique, starting from the Boltzmann equation, for obtaining the time-dependent behavi...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2005.Includes bibliographica...
This work is concerned with collision processes occurring between simple polyatomic gas molecules an...
Particle-in-cell simulations with Monte Carlo collisions are expected to calculate the velocity dist...
In Monte Carlo simulations of electron transport through a neutral background gas, simplifying assum...
When electrons drift and diffuse through a gas under the influence of an electric field, the energy...
The quantum impulse approximation theory has been extended to the inelastic collision. The total ine...
Analytical representations of the elastic scattering cross sections of electrons with energies of 0....
At low reduced electric elds the electron energy distribution function in heavy noble gases can tak...
Abstract. In this paper we discuss the swarm physics based techniques including the Boltzmann equati...
The effect of inelastic collisions between two molecules on the solution of the Boltzmannequation is...
In this paper we discuss the swarm physics based techniques including the Boltzmann equation analysi...
An efficient algorithm to calculate the contribution of electron–electron collisions in the Boltzman...
The Boltzmann equation for an electron gas in a semiconductor is considered. The electron energy is ...
An efficient algorithm to calculate the contribution of electron–electron collisions in the Boltzman...
A numerical technique, starting from the Boltzmann equation, for obtaining the time-dependent behavi...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2005.Includes bibliographica...
This work is concerned with collision processes occurring between simple polyatomic gas molecules an...
Particle-in-cell simulations with Monte Carlo collisions are expected to calculate the velocity dist...
In Monte Carlo simulations of electron transport through a neutral background gas, simplifying assum...
When electrons drift and diffuse through a gas under the influence of an electric field, the energy...
The quantum impulse approximation theory has been extended to the inelastic collision. The total ine...
Analytical representations of the elastic scattering cross sections of electrons with energies of 0....