An efficient kinetic model for assemblies of amyloid fibrils and its application to polyglutamine aggregation S Prigent, A Ballesta, F Charles, N Lenuzza, P Gabriel, LM Tine, H Rezaei, ... PloS one 7 (11), e43273, 2012 | 56 | 2012 |
Enhanced convergence estimates for semi-Lagrangian schemes application to the Vlasov--Poisson equation F Charles, B Després, M Mehrenberger SIAM Journal on Numerical Analysis 51 (2), 840-863, 2013 | 43 | 2013 |
Label structured cell proliferation models HT Banks, F Charles, MD Jauffret, KL Sutton, WC Thompson Applied mathematics letters 23 (12), 1412-1415, 2010 | 20 | 2010 |
Algorithms for positive polynomial approximation M Campos-Pinto, F Charles, B Després SIAM Journal on Numerical Analysis 57 (1), 148-172, 2019 | 15 | 2019 |
Convergence of a linearly transformed particle method for aggregation equations M Campos Pinto, JA Carrillo, F Charles, YP Choi Numerische Mathematik 139, 743-793, 2018 | 15 | 2018 |
The magnetized vlasov–ampere system and the bernstein–landau paradox F Charles, B Després, A Rege, R Weder Journal of Statistical Physics 183 (2), 23, 2021 | 13 | 2021 |
Uniform Convergence of a Linearly Transformed Particle Method for the Vlasov--Poisson System MC Pinto, F Charles SIAM Journal on Numerical Analysis 54 (1), 137-160, 2016 | 13 | 2016 |
Modélisation mathématique et étude numérique d'un aérosol dans un gaz raréfié. Application à la simulation du transport de particules de poussière en cas d'accident de perte de … F Charles École normale supérieure de Cachan-ENS Cachan, 2009 | 11 | 2009 |
Small mass ratio limit of Boltzmann equations in the context of the study of evolution of dust particles in a rarefied atmosphere F Charles, L Desvillettes Journal of Statistical Physics 137, 539-567, 2009 | 10 | 2009 |
Kinetic modeling of the transport of dust particles in a rarefied atmosphere F Charles, S Dellacherie, J Segré Mathematical Models and Methods in Applied Sciences 22 (04), 1150021, 2012 | 9 | 2012 |
Kinetic modelling and numerical simulations using particle methods for the transport of dust in a rarefied gas F Charles 26th International Symposium on Rarified Gas Dynamics (RGD26) 1084 (1), 409-414, 2008 | 8 | 2008 |
Nonlinear stability of a Vlasov equation for magnetic plasmas F Charles, B Després, B Perthame, R Sentis arXiv preprint arXiv:1204.4613, 2012 | 7 | 2012 |
Mathematical and numerical study of a kinetic model describing the evolution of planetary rings F Charles, A Massimini, F Salvarani Computers & Mathematics with Applications 143, 48-56, 2023 | 5 | 2023 |
A projection algorithm on the set of polynomials with two bounds M Campos Pinto, F Charles, B Després, M Herda Numerical Algorithms 85, 1475-1498, 2020 | 5 | 2020 |
From particle methods to forward-backward Lagrangian schemes M Campos Pinto, F Charles The SMAI Journal of computational mathematics 4, 121-150, 2018 | 4* | 2018 |
Modélisation mathématique et étude numérique d’un aérosol. Applicationa la simulation du transport de particules de poussiere en cas d’accident de perte de vide dans ITER F Charles PhD thesis, École Normale Supérieure de Cachan-ENS Cachan, 2009.(Cited on …, 2009 | 4 | 2009 |
Mathematical and numerical study of a dusty Knudsen gas mixture F Charles, F Salvarani Acta Applicandae Mathematicae 168 (1), 17-31, 2020 | 3 | 2020 |
Numerical simulation by a random particle method of Deuterium-Tritium fusion reactions in a plasma F Charles, C Copol, S Dellacherie, JM Mounsamy ESAIM: Proceedings 38, 220-240, 2012 | 3 | 2012 |
Discrete moments models for Vlasov equations with non constant strong magnetic limit F Charles, B Després, R Dai, SA Hirstoaga Comptes Rendus. Mécanique 351 (S1), 307-329, 2023 | 2 | 2023 |
Convergence of a linearly transformed particle method for aggregation equations. JA Carrillo, F Charles, YP Choi Numerische Mathematik 139 (4), 743-793, 2018 | 2 | 2018 |