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Hotspot conditions achieved in inertial confinement fusion experiments on the National Ignition Facility
Author(s) -
P. K. Patel,
P. T. Springer,
C. R. Weber,
L. C. Jarrott,
O. A. Hurricane,
B. Bachmann,
K. L. Baker,
L. Berzak Hopkins,
D. A. Callahan,
D. T. Casey,
C. Cerjan,
D. S. Clark,
E. L. Dewald,
L. Divol,
T. Döppner,
J. E. Field,
D. N. Fittinghoff,
Jim Gaffney,
V. Geppert-Kleinrath,
G. P. Grim,
E. P. Hartouni,
R. Hatarik,
D. E. Hinkel,
M. Hohenberger,
Kelli Humbird,
N. Izumi,
O. S. Jones,
S. F. Khan,
A. L. Kritcher,
Michael Kruse,
O. L. Landen,
S. Le Pape,
T. Ma,
S. A. MacLaren,
A. G. MacPhee,
L. Massé,
N. B. Meezan,
J. L. Milovich,
R. Nora,
A. Pak,
J. L. Peterson,
J. E. Ralph,
H. F. Robey,
J. D. Salmonson,
V. A. Smalyuk,
B. K. Spears,
C. A. Thomas,
P. L. Volegov,
A. B. Zylstra,
M. J. Edwards
Publication year - 2020
Publication title -
physics of plasmas
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.75
H-Index - 160
eISSN - 1089-7674
pISSN - 1070-664X
DOI - 10.1063/5.0003298
Subject(s) - national ignition facility , ignition system , hotspot (geology) , physics , inertial confinement fusion , isobaric process , fusion , mechanics , inertial frame of reference , nuclear engineering , plasma , nuclear physics , classical mechanics , thermodynamics , linguistics , philosophy , geophysics , engineering

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