Particle simulations with Monte Carlo collision models have been widely used to efficiently solve Coulomb collisions in plasma systems. A binary collision Monte Carlo model which has been proposed previously provides more accurate results than the commonly used Nanbu’s model for electron-ion temperature relaxation. In the present work, this binary model is generalized to simulate multicomponent plasmas, and its results still show higher accuracy than Nanbu’s model when compared to the baseline results obtained from Particle-Particle simulations. In addition, the binary model is improved to eliminate the time step length limitation occurred in the previous algorithm
We present a new, for plasma physics, highly efficient multilevel Monte Carlo numer-ical method for ...
Abstract: The new direct simulation method of Monte-Carlo type (DSMC) for Coulomb collisio...
A method for simulating Coulomb collisions in plasma simulations is described, in which particle wei...
If the collisional time scale for Coulomb collisions is comparable to the characteristic time scales...
Abstract: In previous works, discrete simulation Monte Carlo for the kinetic equation with...
The accuracy of first-order Euler and higher-order time-integration algorithms for grid-based Langev...
A laser-driven experiment investigating electron-ion equilibration in strongly coupled plasma was pe...
Abstract: The general DSMC method for solving Boltzmann equation for long-range potentials...
In plasma physics, the direct simulation of inter-particle Coulomb collisions is often necessary to ...
This presentation describes a hybrid computational method for Coulomb collisions in a plasma that co...
German Academic Exchange Service (DAAD); China Scholarship Council (CSC)A physical model based on a ...
A numerical method to implement a linearized Coulomb collision operator in the two-weight Monte Carl...
A physical model based on a Monte Carlo approach is proposed to calculate the ionization dynamics of...
A Monte Carlo approach to proton stopping in warm dense matter is implemented into an existing parti...
If the collisional time scale for Coulomb collisions is comparable to the characteristic time scales...
We present a new, for plasma physics, highly efficient multilevel Monte Carlo numer-ical method for ...
Abstract: The new direct simulation method of Monte-Carlo type (DSMC) for Coulomb collisio...
A method for simulating Coulomb collisions in plasma simulations is described, in which particle wei...
If the collisional time scale for Coulomb collisions is comparable to the characteristic time scales...
Abstract: In previous works, discrete simulation Monte Carlo for the kinetic equation with...
The accuracy of first-order Euler and higher-order time-integration algorithms for grid-based Langev...
A laser-driven experiment investigating electron-ion equilibration in strongly coupled plasma was pe...
Abstract: The general DSMC method for solving Boltzmann equation for long-range potentials...
In plasma physics, the direct simulation of inter-particle Coulomb collisions is often necessary to ...
This presentation describes a hybrid computational method for Coulomb collisions in a plasma that co...
German Academic Exchange Service (DAAD); China Scholarship Council (CSC)A physical model based on a ...
A numerical method to implement a linearized Coulomb collision operator in the two-weight Monte Carl...
A physical model based on a Monte Carlo approach is proposed to calculate the ionization dynamics of...
A Monte Carlo approach to proton stopping in warm dense matter is implemented into an existing parti...
If the collisional time scale for Coulomb collisions is comparable to the characteristic time scales...
We present a new, for plasma physics, highly efficient multilevel Monte Carlo numer-ical method for ...
Abstract: The new direct simulation method of Monte-Carlo type (DSMC) for Coulomb collisio...
A method for simulating Coulomb collisions in plasma simulations is described, in which particle wei...