Present Understanding of Ignition and Gain Using Indirect-Drive Inertial Confinement Fusion Target Designs on the U.S. National Ignition Facility
O. A. Hurricane, A. Allen,B. L. Bachmann,K. L. Baker,S. Baxamusa,S. D. Bhandarkar,J. Biener,S. R. M. Bionta,T. Braun, T. Briggs, G. Brunton,D. T. Casey, T. Chapman,C. Choate,D. S. Clark,E. Dewald,J-m Dinicola, L. Divol, A. Do,T. Fehrenbach,D. N. Fittinghoff,M. Gatu Johnson,H. Geppert Kleinrath,V Geppert Kleinrath,S. Haan,T. J. Hilsabeck, D. E. Hinkel, M. Hohenberger,K. D. Humbird,N. Izumi, C. Kong, A. L. Kritcher,O. L. Landen,J. Lindl,B. J. Macgowan, A. J. Mackinnon, S. A. Maclaren,M. Marinak, R. Meeuwsen,P. Michel,J. Milovich,K. Meaney, M. Millot, J. D. Moody, A. S. Moore, A. Nikroo, R. Nora, A. Pak, J. E. Ralph,M. Ratledge, J. S. Ross,M. S. Rubery,D. J. Schlossberg,P. F. Schmit,S. M. Sepke,V Smalyuk, B. K. Spears, P. T. Springer,M. Stadermann, D. J. Strozzi,T. Suratwala,R. Tommasini, R. P. J. Town, C. R. Weber, C. Wild,B. Van Wonterghem,B. Woodworth, J. Wu, C. Young, A. B. Zylstra PLASMA PHYSICS AND CONTROLLED FUSION(2025)
Key words
inertial confinement fusion,indirect drive,burning plasma,ignition,fusion gain
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