G. A. Bird, Molecular gas dynamics and the direct simulation of gas flows, 1994.

F. Charles, Modélisation mathématiques etétudeetétude numérique d'un aérosol dans un gaz raréfié ApplicationàApplicationà la simulation du transport de particules depoussì ere en cas d'accident de pert de vide dans ITER, pp.69-115, 2009.

S. Dellacherie and R. Sentis, NUCLEAR COLLISIONS MODELS WITH BOLTZMANN OPERATORS, Mathematical Models and Methods in Applied Sciences, vol.10, issue.04, pp.479-506, 2000.
DOI : 10.1142/S0218202500000276

B. H. Duane, Fusion cross-section theory, p.1685, 1951.

R. Farengo, M. Zarco, and H. Ferrari, Simulation of alpha particle current drive and heating in spherical tokamaks, Proceeding of 12th IAEA Technical Meeting on Energetic Particles in Magnetic Confinement Systems, 2011.

P. R. Goncharov, Practical Calculation of Nuclear Fusion Power for a Toroidal Plasma Device with Magnetic Confinement. Plasma and Fusion Research, J-STAGE, vol.5, issue.0, pp.1028-1028, 2010.

T. A. Heltemes, G. A. Moses, and J. Santarius, Analysis of an Improved Fusion Reaction Rate Model for Use in Fusion Plasma Simulations, 2005.

B. Lapeyre, E. Pardoux, and R. Sentis, Méthodes de Monte-Carlo pour leséquationsleséquations de transport et de diffusion, 1998.

O. Larroche, Kinetic simulation of a plasma collision experiment, Physics of Fluids B: Plasma Physics, vol.5, issue.8, pp.2816-2840, 1993.
DOI : 10.1063/1.860670

X. Z. Li, B. Liu, S. Chen, Q. M. Wei, and H. Hora, Fusion cross-sections for inertial fusion energy. Laser and Particle Beams, pp.469-477, 2004.

L. Pareschi and G. Russo, An introduction to Monte Carlo method for the Boltzmann equation, ESAIM: Proceedings, 1999.
DOI : 10.1051/proc:2001004

B. Perthame, Introduction to the Theory of Random Particle Methods for Boltzmann Equation, 1994.
DOI : 10.1142/9789814354165_0008

URL : https://hal.archives-ouvertes.fr/inria-00074452

C. Villani, A review of mathematical topics in collisional kinetic theory. Handbook of mathematical fluid dynamics, pp.71-305, 2002.

S. Wollman, On the Approximation of the Vlasov--Poisson System by Particle Methods, SIAM Journal on Numerical Analysis, vol.37, issue.4, pp.1369-1398, 2000.
DOI : 10.1137/S0036142999298528