Jean-Bernard Maillet

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1997 Université Paris-Sud 11, Orsay, Bures-sur-Yvette, Île-de-France, France 
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"Jean-Bernard Maillet"
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Lafourcade P, Denoual C, Maillet J. (2017) Dislocation Core Structure at Finite Temperature Inferred by Molecular Dynamics Simulations for 1,3,5-Triamino-2,4,6-trinitrobenzene Single Crystal Journal of Physical Chemistry C. 121: 7442-7449
Faure G, Maillet JB, Roussel J, et al. (2016) Size consistency in smoothed dissipative particle dynamics. Physical Review. E. 94: 043305
Kroonblawd MP, Sewell TD, Maillet JB. (2016) Characteristics of energy exchange between inter- and intramolecular degrees of freedom in crystalline 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) with implications for coarse-grained simulations of shock waves in polyatomic molecular crystals. The Journal of Chemical Physics. 144: 064501
Homman AA, Maillet JB, Roussel J, et al. (2016) New parallelizable schemes for integrating the Dissipative Particle Dynamics with Energy conservation. The Journal of Chemical Physics. 144: 024112
Faure G, Maillet JB, Stoltz G. (2014) Local density dependent potential for compressible mesoparticles. The Journal of Chemical Physics. 140: 114105
Bourasseau E, Maillet JB, Desbiens N, et al. (2011) Microscopic calculations of Hugoniot curves of neat triaminotrinitrobenzene (TATB) and of its detonation products. The Journal of Physical Chemistry. A. 115: 10729-37
Bourasseau E, Maillet JB. (2011) Coupling microscopic and mesoscopic scales to simulate chemical equilibrium between a nanometric carbon cluster and detonation products fluid. Physical Chemistry Chemical Physics : Pccp. 13: 7060-70
Maillet J, Bourasseau E, Desbiens N, et al. (2011) Mesoscopic simulations of shock-to-detonation transition in reactive liquid high explosive Epl. 96: 68007
Maillet J, Bourasseau E, Jomard G. (2011) DFT simulations of CO2–HF mixture at extreme conditions: Thermodynamic and chemical properties Chemical Physics Letters. 507: 84-88
Maillet JB, Bourasseau E, Soulard L, et al. (2009) Constant entropy sampling and release waves of shock compressions. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 80: 021135
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