Solving the Boltzmann equation to obtain electron transport coefficients and rate coefficients for fluid models GJM Hagelaar, LC Pitchford Plasma sources science and technology 14 (4), 722, 2005 | 3696 | 2005 |
Lxcat: An open‐access, web‐based platform for data needed for modeling low temperature plasmas LC Pitchford, LL Alves, K Bartschat, SF Biagi, MC Bordage, I Bray, ... Plasma Processes and Polymers 14 (1-2), 1600098, 2017 | 302 | 2017 |
The LXCat project: Electron scattering cross sections and swarm parameters for low temperature plasma modeling S Pancheshnyi, S Biagi, MC Bordage, GJM Hagelaar, WL Morgan, ... Chemical Physics 398, 148-153, 2012 | 287 | 2012 |
Boundary conditions in fluid models of gas discharges GJM Hagelaar, FJ De Hoog, GMW Kroesen Physical Review E 62 (1), 1452, 2000 | 273 | 2000 |
Two-dimensional model of a stationary plasma thruster GJM Hagelaar, J Bareilles, L Garrigues, JP Boeuf Journal of Applied Physics 91 (9), 5592-5598, 2002 | 227 | 2002 |
Computer code zdplaskin S Pancheshnyi, B Eismann, GJM Hagelaar, LC Pitchford University of Toulouse, LAPLACE, CNRS-UPS-INP, Toulouse, France, 2008 | 216 | 2008 |
Role of anomalous electron transport in a stationary plasma thruster simulation GJM Hagelaar, J Bareilles, L Garrigues, JP Boeuf Journal of Applied Physics 93 (1), 67-75, 2003 | 191 | 2003 |
Critical assessment of a two-dimensional hybrid Hall thruster model: Comparisons with experiments J Bareilles, GJM Hagelaar, L Garrigues, C Boniface, JP Boeuf, N Gascon Physics of Plasmas 11 (6), 3035-3046, 2004 | 175 | 2004 |
Numerical model of an argon atmospheric pressure RF discharge N Balcon, GJM Hagelaar, JP Boeuf IEEE transactions on plasma science 36 (5), 2782-2787, 2008 | 145 | 2008 |
Speeding up fluid models for gas discharges by implicit treatment of the electron energy source term GJM Hagelaar, GMW Kroesen Journal of Computational Physics 159 (1), 1-12, 2000 | 144 | 2000 |
Physics, simulation and diagnostics of Hall effect thrusters JC Adam, JP Boeuf, N Dubuit, M Dudeck, L Garrigues, D Gresillon, ... Plasma Physics and Controlled Fusion 50 (12), 124041, 2008 | 134 | 2008 |
Model of an inductively coupled negative ion source: II. Application to an ITER type source JP Boeuf, GJM Hagelaar, P Sarrailh, G Fubiani, N Kohen Plasma Sources Science and Technology 20 (1), 015002, 2011 | 132 | 2011 |
Data needs for modeling low-temperature non-equilibrium plasmas: the LXCat project, history, perspectives and a tutorial E Carbone, W Graef, G Hagelaar, D Boer, MM Hopkins, JC Stephens, ... Atoms 9 (1), 16, 2021 | 131 | 2021 |
Model study of the influence of the magnetic field configuration on the performance and lifetime of a Hall thruster L Garrigues, GJM Hagelaar, J Bareilles, C Boniface, JP Boeuf Physics of Plasmas 10 (12), 4886-4892, 2003 | 128 | 2003 |
Comparisons of sets of electron–neutral scattering cross sections and swarm parameters in noble gases: I. Argon LC Pitchford, LL Alves, K Bartschat, SF Biagi, MC Bordage, AV Phelps, ... Journal of Physics D: Applied Physics 46 (33), 334001, 2013 | 123 | 2013 |
Model of an inductively coupled negative ion source: I. General model description GJM Hagelaar, G Fubiani, JP Boeuf Plasma Sources Science and Technology 20 (1), 015001, 2011 | 118 | 2011 |
Modeling of microdischarges for display technology GJM Hagelaar | 118 | 2000 |
Anomalous cross field electron transport in a Hall effect thruster C Boniface, L Garrigues, GJM Hagelaar, JP Boeuf, D Gawron, ... Applied Physics Letters 89 (16), 2006 | 117 | 2006 |
Comparisons of sets of electron–neutral scattering cross sections and swarm parameters in noble gases: II. Helium and neon LL Alves, K Bartschat, SF Biagi, MC Bordage, LC Pitchford, CM Ferreira, ... Journal of Physics D: Applied Physics 46 (33), 334002, 2013 | 110 | 2013 |
Computer code zdplaskin, University of Toulouse, LAPLACE S Pancheshnyi, B Eismann, GJM Hagelaar, LC Pitchford tech. rep., CNRS-UPS-INP, Toulouse, France, 2008 | 98 | 2008 |