A model of nonlocal transport for multidimensional radiation magnetohydrodynamics codes is presented. In laser produced plasmas, it is now believed that the heat transport can be strongly modified by the nonlocal nature of the electron conduction. Other mechanisms, such as self-generated magnetic fields, may also affect the heat transport. The model described in this work, based on simplified Fokker-Planck equations aims at extending the model of G. Schurtz, Ph. Nicolai, and M. Busquet [Phys. Plasmas 7, 4238 (2000)] to magnetized plasmas. A complete system of nonlocal equations is derived from kinetic equations with self-consistent electric and magnetic fields. These equations are analyzed and simplified in order to be implemented into large laser fusion codes and coupled to other relevant physics. The model is applied to two laser configurations that demonstrate the main features of the model and point out the nonlocal Righi-Leduc effect in a multidimensional case.
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Univ Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, FranceUniv Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, France
Voitsekhovitch, I.
Garbet, X.
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CEA Cadarache, EURATOM Assoc, CEA Fus, F-13108 St Paul Les Durance, FranceUniv Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, France
Garbet, X.
Benkadda, S.
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Univ Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, FranceUniv Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, France
Benkadda, S.
Beyer, P.
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Univ Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, FranceUniv Aix Marseille 1, Equipe Dynam Syst Complexes, LPIIM, Marseille, France