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 CO6: Hohlraum and X-ray Cavity Physics
2:00 PM–4:48 PM,
Monday, November 5, 2018
OCC
Room: B115-116
Chair: Pierre Michel, Lawrence Livermore National Laboratory
Abstract ID: BAPS.2018.DPP.CO6.6
Abstract: CO6.00006 : Effects of plasma interpenetration on hohlraum stagnation
3:00 PM–3:12 PM
Presenter:
Chikang Li
(Massachusetts Inst of Tech-MIT)
Authors:
Chikang Li
(Massachusetts Inst of Tech-MIT)
Scott Wilks
(Lawrence Livermore Natl Lab)
Paul-Edouard Masson-Laborde
(CEA DAM DIF)
Stephane Laffite
(CEA DAM DIF)
Peter Andrew Amendt
(Lawrence Livermore Natl Lab)
Riccardo Betti
(Laboratory for Laser Energetics)
Archie Bott
(University of Oxford)
Edward Michael Campbell
(Laboratory for Laser Energetics)
Johan Frenje
(Massachusetts Inst of Tech-MIT)
Richard David Petrasso
(Massachusetts Inst of Tech-MIT)
Thomas C Sangster
(Laboratory for Laser Energetics)
Fredrick Seguin
(Massachusetts Inst of Tech-MIT)
Veronique Tassin
(CEA DAM DIF)
Understanding plasma stagnation in laser-driven hohlraums is important for optimizing inertial confinement fusion experiments. It has been realized that single-species-averaged hydrodynamic codes are incapable of modelling this phenomenon, as they overlook the ion kinetic process and multi-fluid effects, leading to discrepancies between simulations and experimental results. A number of mechanisms that play important roles in these non-hydrodynamic processes but are missing in hydrodynamic simulations have been identified, including ion interpenetration and diffusion. To explore these important phenomena, observations made with various diagnostic techniques at Omega such as proton radiography and x-ray imaging are compared with modified three-dimensional hydrodynamic simulations, providing insight into the effects of plasma interpenetration on hohlraum stagnation and a more complete physical picture of hohlraum dynamics.
The work described herein was performed in part at the LLE National Laser User’s Facility (NLUF), and was supported in part by US DOE, LLNL and LLE.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.CO6.6
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