Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session JO4: Analytical and Computational Techniques in Inertial Confinement Fusion
2:00 PM–4:36 PM,
Tuesday, November 6, 2018
OCC
Room: B110-112
Chair: Chuang Ren, University of Rochester
Abstract ID: BAPS.2018.DPP.JO4.11
Abstract: JO4.00011 : Monte-Carlo formulation of both time dependent and stationary ray-tracing methods including cross-beam energy transfer, Raman and Brillouin scatterings
4:00 PM–4:12 PM
Presenter:
Arnaud Debayle
(CEA DAM DIF)
Authors:
Arnaud Debayle
(CEA DAM DIF)
Charles Ruyer
(CEA DAM DIF)
Olivier Morice
(CEA DAM DIF)
Paul-Edouard Masson-Laborde
(CEA DAM DIF)
Pascal Loiseau
(CEA DAM DIF)
Didier Benisti
(CEA DAM DIF)
To reduce the problem, a popular method consists in approximating the Maxwell equations with the WKB envelop solution, that provides the eikonal and transport equations. The latter are then solved using the “ray-tracing approach”. However, this Monte-Carlo (MC) method, as implemented in many hydrodynamic codes, is not clearly formulated and may appear as “intuitive”. As a result, it is often difficult to self-consistently include other effects than the laser energy deposition.
We have formulated two MC methods in order to solve the time dependent and the stationary eikonal and transport equations. The energy exchange between lasers, as well as Raman and Brillouin scatterings in the convective regime, are described as “collisions” or more exactly as ray creation/destruction. The method is fast and the solutions have been validated with particle-in-cell simulations and with known analytical solutions in homogeneous plasma.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.JO4.11
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