Published November 15, 2017 | Version v1
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Physics of Weibel-type instabilities

Description

Weibel-type instabilities occurs when the velocity distribution function of the charged particles displays a pronounced anisotropy. A long-lasting magnetic field is generated due to the formation of current filaments, and it is accompanied by an important electrostatic activity. These basic phenomena have been greatly investigated because of their involvement in many physical problems, natural (solar wind, relativistic jets) or experimental (laser-plasma interaction in inertial fusion): they occurs in plasmas which can be collisional or not, magnetised or not, relativistic or not. One needs to choose a suitable model for their description. The kinetic theory is the most complete and somewhat complex theoretical framework which we will consider. Due to its complexity, it may be interesting to develop reduced models. The first work realised during this thesis is the utilisation of a non-relativistic fluid description, including the dynamics of the pressure tensor, in order to model the linear Weibel-type instabilities. We put in evidence the effect of the non-diagonal components of the tensor on the magnetic field generation. We discuss the ability of the model to reproduce quantitatively or qualitatively the kinetic results by introducing the hydrodynamics limit. The second part of this thesis work is dedicated to the development of the relativistic semi-Lagrangian code VLEM, using a domain decomposition scheme: we present the main mathematical tools used in the code, then we deal with the problem of the charge conservation and propose a solution for VLEM, based on an adaptation of the Esirkepov method. Finally, we validate the code through simulations of Weibel-type. (author)

Abstract (French)

Les instabilites de type Weibel naissent si la distribution des vitesses du plasma presente une anisotropie. Elles entrainent la generation d'un champ magnetique du a la formation de filaments de courant ainsi qu'une activite electrostatique importante. Ces phenomenes de base apparaissent dans de nombreuses situations, naturelles (vent solaire, jets relativistes) ou experimentales (interaction laser-plasma): les plasmas dans lesquels ils naissent peuvent etre relativistes ou non, magnetises ou non, collisionnels ou non, ce qui pose la question du choix du modele a utiliser pour les decrire. La theorie cinetique est le cadre le plus complexe dans lequel nous travaillerons. De par sa complexite, il est interessant de developper des modeles reduits. Un premier travail mene au cours de cette these est l'utilisation d'un modele fluide incluant la dynamique du tenseur de pression pour modeliser la phase lineaire des instabilites de type Weibel. On discute le role essentiel joue par les composantes hors diagonale du tenseur dans la generation du champ magnetique, puis la capacite du modele a reproduire quantitativement ou qualitativement les resultats cinetiques en introduisant la notion de limite hydrodynamique. La seconde partie de la these est ciblee sur le developpement du code semi-lagrangien relativiste VLEM utilisant une methode de decomposition de domaine: on presente les principales methodes mathematiques utilisees dans le code, puis on aborde la problematique de la conservation de la charge a laquelle on apporte une reponse reposant sur une adaptation de la methode d'Esirkepov. Le code est enfin valide grace a plusieurs simulations d'instabilites de type Weibel. (auteur)

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Additional details

Additional titles

Original title (French)
Physique des instabilites de type Weibel

Publishing Information

Imprint Pagination
184 p.
Report number
FRNC-TH--12097

Optional Information

Notes
143 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses