High-resolution integrated Eulerian simulations of hohlraum dynamics and capsule implosions
ORAL
Abstract
[1]Haines et al, Phys Plasmas (submitted) 2022
[2]Kline et al, Phys Rev Lett 106:085003 2011
[3]Le Pape et al, Phys Rev Lett 124:025003 2020
[4]Vold et al, Phys Plasmas 24:042702 2017
[5]Zylstra et al, Phys Plasmas 27:092709 2020
[6]Marozas et al, Phys Plasmas 25:056314 2018
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Publication: B. M. Haines, D. E. Keller, K. P. Long, M. D. McKay Jr., Z. J. Medin, H. Park, R. M. Rauenzahn, H. A. Scott, K. S. Anderson, T. J. B. Collins, L. M. Green, J. A. Marozas, P. W. McKenty, E. L. Vold, C. Di Stefano, J. P. Sauppe, and D. J. Stark. The development of a high-resolution Eulerian radiation-hydrodynamics simulation capability for laser-driven hohlraums. Physics of Plasmas, submitted (2022).
Presenters
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Brian M Haines
Los Alamos National Laboratory, Los Alamos National Lab
Authors
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Brian M Haines
Los Alamos National Laboratory, Los Alamos National Lab
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Carlos A Di Stefano
Los Alamos National Laboratory
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Ryan S Lester
Los Alamos National Laboratory
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Joshua P Sauppe
Los Alamos National Laboratory, LANL
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David Stark
Los Alamos National Laboratory