High Power Laser Science and Engineering, Volume. 4, Issue 4, 04000e44(2016)
Developing one-dimensional implosions for inertial confinement fusion science
Article index updated: Feb. 27, 2023
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J. L. Kline, S. A. Yi, A. N. Simakov, R. E. Olson, D. C. Wilson, G. A. Kyrala, T. S. Perry, S. H. Batha, E. L. Dewald, J. E. Ralph, D. J. Strozzi, A. G. MacPhee, D. A. Callahan, D. Hinkel, O. A. Hurricane, R. J. Leeper, A. B. Zylstra, R. R. Peterson, B. M. Haines, L. Yin, P. A. Bradley, R. C. Shah, T. Braun, J. Biener, B. J. Kozioziemski, J. D. Sater, M. M. Biener, A. V. Hamza, A. Nikroo, L. F. Berzak Hopkins, D. Ho, S. LePape, N. B. Meezan, D. S. Montgomery, W. S. Daughton, E. C. Merritt, T. Cardenas, E. S. Dodd. Developing one-dimensional implosions for inertial confinement fusion science[J]. High Power Laser Science and Engineering, 2016, 4(4): 04000e44
Special Issue: HIGH ENERGY DENSITY PHYSICS AND HIGH POWER LASER
Received: May. 3, 2016
Accepted: Sep. 29, 2016
Published Online: Jan. 19, 2017
The Author Email: J. L. Kline (jkline@lanl.gov)