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Initial cone-in-shell fast-ignition experiments on OMEGA

Authors :
Karen S. Anderson
A. A. Solodov
Hideaki Habara
W. Seka
Christian Stoeckl
J. A. Delettrez
V. Yu. Glebov
T. Ma
T. R. Boehly
T. C. Sangster
P. M. Nilson
J. P. Knauer
H. Chen
R. Lauck
W. Theobald
R.B. Stephens
Kenneth L. Marshall
F. N. Beg
N. Sinenian
Christophe Dorrer
R. Betti
R. S. Craxton
F. J. Marshall
J. A. Frenje
D. D. Meyerhofer
P. K. Patel
E. M. Giraldez
Kokichi Tanaka
Source :
Physics of Plasmas. 18:056305
Publication Year :
2011
Publisher :
AIP Publishing, 2011.

Abstract

Fast ignition is a two-step inertial confinement fusion concept where megaelectron volt electrons ignite the compressed core of an imploded fuel capsule driven by a relatively low-implosion velocity. Initial surrogate cone-in-shell, fast-ignitor experiments using a highly shaped driver pulse to assemble a dense core in front of the cone tip were performed on the OMEGA/OMEGA EP Laser [T. R. Boehly et al., Opt. Commun. 133, 495 (1997); L. J. Waxer et al., Opt. Photonics News 16, 30 (2005)]. With optimal timing, the OMEGA EP pulse produced up to ∼1.4 × 107 additional neutrons which is a factor of ∼4 more neutrons than without short-pulse heating. Shock-breakout measurements performed with the same targets and drive conditions demonstrate an intact cone tip at the time when the additional neutrons are produced. Velocity interferometer system for any reflector measurements show that x-rays from the shell’s coronal plasma preheat the inner cone wall of thin-walled Au cones, while the thick-walled cones that are...

Details

ISSN :
10897674 and 1070664X
Volume :
18
Database :
OpenAIRE
Journal :
Physics of Plasmas
Accession number :
edsair.doi...........07ed94f5e7536ffab16d6f34b79f4faf
Full Text :
https://doi.org/10.1063/1.3566082