Demonstration of hot-spot fuel gain exceeding unity in direct-drive inertial confinement fusion implosions
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Published:2024-02-05
Issue:5
Volume:20
Page:758-764
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ISSN:1745-2473
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Container-title:Nature Physics
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language:en
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Short-container-title:Nat. Phys.
Author:
Williams C. A.ORCID, Betti R., Gopalaswamy V., Knauer J. P., Forrest C. J., Lees A., Ejaz R., Farmakis P. S., Cao D., Radha P. B., Anderson K. S., Regan S. P., Glebov V. YuORCID, Shah R. C., Stoeckl C., Ivancic S., Churnetski K., Janezic R. T., Fella C., Rosenberg M. J., Bonino M. J., Harding D. R., Shmayda W. T.ORCID, Carroll-Nellenback J.ORCID, Hu S. X., Epstein R., Collins T. J. B., Thomas C. A., Igumenshchev I. V., Goncharov V. N., Theobald W.ORCID, Woo K. M., Marozas J. A., Bauer K. A.ORCID, Sampat S., Waxer L. J., Turnbull D., Heuer P. V.ORCID, McClow H., Ceurvorst L., Scullin W.ORCID, Edgell D. H., Koch M., Bredesen D., Johnson M. GatuORCID, Frenje J. A., Petrasso R. D., Shuldberg C.ORCID, Farrell M., Murray J.ORCID, Guzman D., Serrato B., Morse S. F. B.ORCID, Labuzeta M.ORCID, Deeney C., Campbell E. M.
Funder
DOE | National Nuclear Security Administration DOE | NNSA | Office of Naval Reactors
Publisher
Springer Science and Business Media LLC
Reference51 articles.
1. Nuckolls, J., Wood, L., Thiessen, A. & Zimmerman, G. Laser compression of matter to super-high densities: thermonuclear (CTR) applications. Nature 239, 139–142 (1972). 2. Betti, R. & Hurricane, O. Inertial-confinement fusion with lasers. Nat. Phys. 12, 435–448 (2016). 3. Atzeni, S. & Meyer-Ter-Vehn, J. The Physics of Inertial Fusion: Beam Plasma Interaction, Hydrodynamics, Hot Dense Matter (Clarendon Press, 2004). 4. Craxton, R. S. et al. Direct-drive inertial confinement fusion: a review. Phys. Plasmas 22, 110501 (2015). 5. Lindl, J. Development of the indirect-drive approach to inertial confinement fusion and the target physics basis for ignition and gain. Phys. Plasmas 2, 3933–4024 (1995).
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