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Physical Review Letters|September 7, 2019
Rarefaction Flows and Mitigation of Imprint in Direct-Drive ImplosionsI V Igumenshchev, A L Velikovich, V N Goncharov, et al.Physical Review. E|January 23, 2020
Direct-drive double-shell implosion: A platform for burning-plasma physics studiesS X Hu, R Epstein, W Theobald, et al.The Review of Scientific Instruments|February 2, 2015
Note: Experimental platform for magnetized high-energy-density plasma studies at the omega laser facilityG Fiksel, A Agliata, D Barnak, et al.Physical Review. E|July 22, 2020
Hybrid target design for imprint mitigation in direct-drive inertial confinement fusionL Ceurvorst, R Betti, A Casner, et al.Physical Review Letters|September 26, 2012
First measurements of Rayleigh-Taylor-induced magnetic fields in laser-produced plasmasM J-E Manuel, C K Li, F H Séguin, et al.Physical Review. E|June 16, 2022
Measurements of the temperature and velocity of the dense fuel layer in inertial confinement fusion experimentsO M Mannion, A J Crilly, C J Forrest, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 8, 2009
Pressure-driven, resistive magnetohydrodynamic interchange instabilities in laser-produced high-energy-density plasmasC K Li, J A Frenje, R D Petrasso, et al.Physical Review Letters|May 21, 2013
Observation of self-similarity in the magnetic fields generated by the ablative nonlinear Rayleigh-Taylor instabilityL Gao, P M Nilson, I V Igumenschev, et al.The Review of Scientific Instruments|October 1, 2022
Three-dimensional hot-spot x-ray emission tomography from cryogenic deuterium-tritium direct-drive implosions on OMEGAK Churnetski, K M Woo, W Theobald, et al.The Journal of Allergy and Clinical Immunology|February 27, 2017
Recognition of viral and self-antigens by T<sub>H</sub>1 and T<sub>H</sub>1/T<sub>H</sub>17 central memory cells in patients with multiple sclerosis reveals distinct roles in immune surveillance and relapsesMoira Paroni, Virginia Maltese, Marco De Simone, et al.Pageof 20