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Physical Review Letters|August 13, 2013
Hot-spot mix in ignition-scale inertial confinement fusion targetsS P Regan, R Epstein, B A Hammel, et al.
The Review of Scientific Instruments|November 7, 2012
Soft x-ray images of the laser entrance hole of ignition hohlraumsM B Schneider, N B Meezan, S S Alvarez, et al.
Physical Review Letters|September 10, 2013
Onset of hydrodynamic mix in high-velocity, highly compressed inertial confinement fusion implosionsT Ma, P K Patel, N Izumi, 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|April 25, 2015
Thin shell, high velocity inertial confinement fusion implosions on the national ignition facilityT Ma, O A Hurricane, D A Callahan, et al.
Physical Review Letters|December 10, 2013
Performance of high-convergence, layered DT implosions with extended-duration pulses at the National Ignition FacilityV A Smalyuk, L J Atherton, L R Benedetti, et al.
Nature Communications|April 6, 2024
The impact of low-mode symmetry on inertial fusion energy output in the burning plasma stateJ E Ralph, J S Ross, A B Zylstra, et al.
Nature|January 27, 2022
Burning plasma achieved in inertial fusionA B Zylstra, O A Hurricane, D A Callahan, et al.
Physical Review Letters|September 26, 2012
Assembly of high-areal-density deuterium-tritium fuel from indirectly driven cryogenic implosionsA J Mackinnon, J L Kline, S N Dixit, et al.
Physical Review Letters|March 17, 2011
Demonstration of ignition radiation temperatures in indirect-drive inertial confinement fusion hohlraumsS H Glenzer, B J MacGowan, N B Meezan, et al.
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