Review of the national ignition campaign 2009-2012 J Lindl, O Landen, J Edwards, E Moses, NIC team Physics of Plasmas 21 (2), 2014 | 794 | 2014 |
Burning plasma achieved in inertial fusion AB Zylstra, OA Hurricane, DA Callahan, AL Kritcher, JE Ralph, HF Robey, ... Nature 601 (7894), 542-548, 2022 | 464 | 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 | 352 | 2022 |
Fusion yield enhancement in magnetized laser-driven implosions PY Chang, G Fiksel, M Hohenberger, JP Knauer, R Betti, FJ Marshall, ... Physical review letters 107 (3), 035006, 2011 | 249 | 2011 |
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 | 205 | 2016 |
Inertial confinement fusion implosions with imposed magnetic field compression using the OMEGA Laser M Hohenberger, PY Chang, G Fiksel, JP Knauer, R Betti, FJ Marshall, ... Physics of Plasmas 19 (5), 2012 | 173 | 2012 |
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 | 166 | 2022 |
Experimental achievement and signatures of ignition at the National Ignition Facility AB Zylstra, AL Kritcher, OA Hurricane, DA Callahan, JE Ralph, DT Casey, ... Physical Review E 106 (2), 025202, 2022 | 163 | 2022 |
Origins and scaling of hot-electron preheat in ignition-scale direct-drive inertial confinement fusion experiments MJ Rosenberg, AA Solodov, JF Myatt, W Seka, P Michel, M Hohenberger, ... Physical review letters 120 (5), 055001, 2018 | 142 | 2018 |
Laser-direct-drive program: Promise, challenge, and path forward EM Campbell, VN Goncharov, TC Sangster, SP Regan, PB Radha, R Betti, ... Matter and Radiation at Extremes 2 (2), 37-54, 2017 | 142 | 2017 |
Design of an inertial fusion experiment exceeding the Lawson criterion for ignition AL Kritcher, AB Zylstra, DA Callahan, OA Hurricane, CR Weber, DS Clark, ... Physical Review E 106 (2), 025201, 2022 | 141 | 2022 |
First high-convergence cryogenic implosion in a near-vacuum hohlraum LF Berzak Hopkins, NB Meezan, S Le Pape, L Divol, AJ Mackinnon, ... Physical review letters 114 (17), 175001, 2015 | 140 | 2015 |
Physics issues for shock ignition D Batani, S Baton, A Casner, S Depierreux, M Hohenberger, O Klimo, ... Nuclear Fusion 54 (5), 054009, 2014 | 138 | 2014 |
Symmetry control of an indirectly driven high-density-carbon implosion at high convergence and high velocity L Divol, A Pak, LF Berzak Hopkins, S Le Pape, NB Meezan, EL Dewald, ... Physics of Plasmas 24 (5), 2017 | 125 | 2017 |
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 | 124 | 2024 |
Approaching a burning plasma on the NIF OA Hurricane, PT Springer, PK Patel, DA Callahan, K Baker, DT Casey, ... Physics of Plasmas 26 (5), 2019 | 124 | 2019 |
Record energetics for an inertial fusion implosion at NIF AB Zylstra, AL Kritcher, OA Hurricane, DA Callahan, K Baker, T Braun, ... Physical review letters 126 (2), 025001, 2021 | 115 | 2021 |
The high velocity, high adiabat,“Bigfoot” campaign and tests of indirect-drive implosion scaling DT Casey, CA Thomas, KL Baker, BK Spears, M Hohenberger, SF Khan, ... Physics of Plasmas 25 (5), 2018 | 111 | 2018 |
Exploring the limits of case-to-capsule ratio, pulse length, and picket energy for symmetric hohlraum drive on the National Ignition Facility Laser DA Callahan, OA Hurricane, JE Ralph, CA Thomas, KL Baker, ... Physics of Plasmas 25 (5), 2018 | 111 | 2018 |
High-performance indirect-drive cryogenic implosions at high adiabat on the National Ignition Facility KL Baker, CA Thomas, DT Casey, S Khan, BK Spears, R Nora, T Woods, ... Physical review letters 121 (13), 135001, 2018 | 110 | 2018 |