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Physical Review. E|February 17, 2023
Alpha heating of indirect-drive layered implosions on the National Ignition FacilityK L Baker, S MacLaren, O Jones, et al.Physical Review Letters|August 13, 2016
Publisher's Note: Demonstration of Fuel Hot-Spot Pressure in Excess of 50 Gbar for Direct-Drive, Layered Deuterium-Tritium Implosions on OMEGA [Phys. Rev. Lett. 117, 025001 (2016)]S P Regan, V N Goncharov, I V Igumenshchev, et al.Physical Review Letters|August 4, 2025
First Demonstration of Improved Fusion Yield with Increased Compression through Reduced Adiabat in Inertial Confinement Fusion Experiments at the National Ignition FacilityM Hohenberger, D S Clark, K D Humbird, et al.Physical Review. E|March 16, 2024
Design of the first fusion experiment to achieve target energy gain G>1A L Kritcher, A B Zylstra, C R Weber, et al.Physical Review Letters|May 16, 2015
First high-convergence cryogenic implosion in a near-vacuum hohlraumL F Berzak Hopkins, N B Meezan, S Le Pape, et al.Physical Review Letters|July 23, 2016
Demonstration of Fuel Hot-Spot Pressure in Excess of 50 Gbar for Direct-Drive, Layered Deuterium-Tritium Implosions on OMEGAS P Regan, V N Goncharov, I V Igumenshchev, et al.Physical Review. E|September 16, 2022
Design of an inertial fusion experiment exceeding the Lawson criterion for ignitionA L Kritcher, A B Zylstra, D A Callahan, et al.Physical Review. E|September 16, 2022
Experimental achievement and signatures of ignition at the National Ignition FacilityA B Zylstra, A L Kritcher, O A Hurricane, et al.Physical Review. E|March 16, 2024
Observations and properties of the first laboratory fusion experiment to exceed a target gain of unityA Pak, A B Zylstra, K L Baker, et al.Nature|January 27, 2022
Burning plasma achieved in inertial fusionA B Zylstra, O A Hurricane, D A Callahan, et al.Pageof 8