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|Williams, GJ., et al., "Production of relativistic electrons at subrelativistic laser intensities." Phys. Rev. E, v. 101, 031201 (2020)||2020|
|Higginson, DP., et al., "Kinetic effects on neutron generation in moderately collisional interpenetrating plasma flows." Phys. Plasmas, v. 26, 012113 (2019)||2019|
|Kuranz, CC., et al., "How high energy fluxes may affect Rayleigh-Taylor instability growth in young supernova remnants." Nat. Commun., v. 9, 1564 (2018)||2018|
|Ross, JS., et al., "Transition from Collisional to Collisionless Regimes in Interpenetrating Plasma Flows on the National Ignition Facility." Phys. Rev. Lett., v. 118, 185003 (2017)||2017|
|Perry, TS., et al., "Replicating the Z iron opacity experiments on the NIF." High Energ. Dens. Phys., v. 23, p.223-227 (2017)||2017|
|Zylstra, AB., et al., "Proton pinhole imaging on the National Ignition Facility." Rev. Sci. Instrum., v. 87, 11E704 (2016)||2016|
|Sutcliffe, GD., et al., "A novel method to recover DD fusion proton CR-39 data corrupted by fast ablator ions at OMEGA and the National Ignition Facility." Rev. Sci. Instrum., v. 87, 11D812 (2016)||2016|
|Pak, A., et al., "Radiative shocks produced from spherical cryogenic implosions at the National Ignition Facility." Phys. Plasmas, v. 20, 056315 (2013)||2013|
|Pak, A., et al., "Diagnosing radiative shocks from deuterium and tritium implosions on NIF." Rev. Sci. Instrum., v. 83, 10E507 (2012)||2012|
|Kuranz, CC., et al., "Astrophysically relevant radiation hydrodynamics experiment at the National Ignition Facility." Astrophys. Space Sci., v. 336, p.207-211 (2011)||2011|