Review of the national ignition campaign 2009-2012 J Lindl, O Landen, J Edwards, E Moses, NIC team Physics of Plasmas 21 (2), 2014 | 809 | 2014 |
Point design targets, specifications, and requirements for the 2010 ignition campaign on the National Ignition Facility SW Haan, JD Lindl, DA Callahan, DS Clark, JD Salmonson, BA Hammel, ... Physics of Plasmas 18 (5), 2011 | 751 | 2011 |
Burning plasma achieved in inertial fusion AB Zylstra, OA Hurricane, DA Callahan, AL Kritcher, JE Ralph, HF Robey, ... Nature 601 (7894), 542-548, 2022 | 497 | 2022 |
Lawson criterion for ignition exceeded in an inertial fusion experiment H Abu-Shawareb, R Acree, P Adams, J Adams, B Addis, R Aden, P Adrian, ... Physical review letters 129 (7), 075001, 2022 | 384 | 2022 |
Progress towards ignition on the National Ignition Facility MJ Edwards, PK Patel, JD Lindl, LJ Atherton, SH Glenzer, SW Haan, ... Physics of Plasmas 20 (7), 2013 | 368 | 2013 |
High-adiabat high-foot inertial confinement fusion implosion experiments on the National Ignition Facility HS Park, OA Hurricane, DA Callahan, DT Casey, EL Dewald, TR Dittrich, ... Physical review letters 112 (5), 055001, 2014 | 297 | 2014 |
High-energy Kα radiography using high-intensity, short-pulse lasers HS Park, DM Chambers, HK Chung, RJ Clarke, R Eagleton, E Giraldez, ... Physics of plasmas 13 (5), 2006 | 282 | 2006 |
Onset of Hydrodynamic Mix in High-Velocity, Highly Compressed<? format?> Inertial Confinement Fusion Implosions T Ma, PK Patel, N Izumi, PT Springer, MH Key, LJ Atherton, LR Benedetti, ... Physical Review Letters 111 (8), 085004, 2013 | 270 | 2013 |
Magnetohydrodynamic scaling: From astrophysics to the laboratory DD Ryutov, BA Remington, HF Robey, RP Drake Physics of Plasmas 8 (5), 1804-1816, 2001 | 234 | 2001 |
Three-dimensional simulations of low foot and high foot implosion experiments on the National Ignition Facility DS Clark, CR Weber, JL Milovich, JD Salmonson, AL Kritcher, SW Haan, ... Physics of Plasmas 23 (5), 2016 | 222 | 2016 |
Inertially confined fusion plasmas dominated by alpha-particle self-heating OA Hurricane, DA Callahan, DT Casey, EL Dewald, TR Dittrich, ... Nature Physics 12 (8), 800-806, 2016 | 209 | 2016 |
The high-foot implosion campaign on the National Ignition Facility OA Hurricane, DA Callahan, DT Casey, EL Dewald, TR Dittrich, ... Physics of Plasmas 21 (5), 2014 | 205 | 2014 |
On validating an astrophysical simulation code AC Calder, B Fryxell, T Plewa, R Rosner, LJ Dursi, VG Weirs, T Dupont, ... The Astrophysical Journal Supplement Series 143 (1), 201, 2002 | 185 | 2002 |
Capsule implosion optimization during the indirect-drive National Ignition Campaign OL Landen, J Edwards, SW Haan, HF Robey, J Milovich, BK Spears, ... Physics of Plasmas 18 (5), 2011 | 182 | 2011 |
Detailed implosion modeling of deuterium-tritium layered experiments on the National Ignition Facility DS Clark, DE Hinkel, DC Eder, OS Jones, SW Haan, BA Hammel, ... Physics of Plasmas 20 (5), 2013 | 175 | 2013 |
Design of inertial fusion implosions reaching the burning plasma regime AL Kritcher, CV Young, HF Robey, CR Weber, AB Zylstra, OA Hurricane, ... Nature Physics 18 (3), 251-258, 2022 | 174 | 2022 |
Radiation hydrodynamics modeling of the highest compression inertial confinement fusion ignition experiment from the National Ignition Campaign DS Clark, MM Marinak, CR Weber, DC Eder, SW Haan, BA Hammel, ... Physics of Plasmas 22 (2), 2015 | 171 | 2015 |
High-density carbon ablator experiments on the National Ignition Facility AJ MacKinnon, NB Meezan, JS Ross, S Le Pape, L Berzak Hopkins, ... Physics of Plasmas 21 (5), 2014 | 162 | 2014 |
Achievement of target gain larger than unity in an inertial fusion experiment H Abu-Shawareb, R Acree, P Adams, J Adams, B Addis, R Aden, P Adrian, ... Physical Review Letters 132 (6), 065102, 2024 | 160 | 2024 |
The time scale for the transition to turbulence in a high Reynolds number, accelerated flow HF Robey, Y Zhou, AC Buckingham, P Keiter, BA Remington, RP Drake Physics of Plasmas 10 (3), 614-622, 2003 | 153 | 2003 |