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John M. Dawson grad student 1969 Princeton
 (Some Investigations of Wave-Particle Interactions)
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Amendt P, Ho D, Ping Y, et al. (2019) Ultra-high (>30%) coupling efficiency designs for demonstrating central hot-spot ignition on the National Ignition Facility using a Frustraum Physics of Plasmas. 26: 082707
Michel P, Divol L, Dewald EL, et al. (2015) Multibeam Stimulated Raman Scattering in Inertial Confinement Fusion Conditions. Physical Review Letters. 115: 055003
Craxton RS, Anderson KS, Boehly TR, et al. (2015) Direct-drive inertial confinement fusion: A review Physics of Plasmas. 22
Lindl JD, Landen OL, Edwards J, et al. (2014) Erratum: “Review of the National Ignition Campaign 2009-2012” [Phys. Plasmas 21, 020501 (2014)] Physics of Plasmas. 21: 129902
Eimerl D, Campbell EM, Krupke WF, et al. (2014) StarDriver: A flexible laser driver for inertial confinement fusion and high energy density physics Journal of Fusion Energy. 33: 476-488
Döppner T, Thomas CA, Divol L, et al. (2012) Direct measurement of energetic electrons coupling to an imploding low-adiabat inertial confinement fusion capsule. Physical Review Letters. 108: 135006
Moody JD, Michel P, Divol L, et al. (2012) Multistep redirection by cross-beam power transfer of ultrahigh-power lasers in a plasma Nature Physics. 8: 344-349
Rosen MD, Scott HA, Hinkel DE, et al. (2011) The role of a detailed configuration accounting (DCA) atomic physics package in explaining the energy balance in ignition-scale hohlraums High Energy Density Physics. 7: 180-190
Chen H, Wilks SC, Meyerhofer DD, et al. (2010) Relativistic quasimonoenergetic positron jets from intense laser-solid interactions. Physical Review Letters. 105: 015003
Michel P, Glenzer SH, Divol L, et al. (2010) Symmetry tuning via controlled crossed-beam energy transfer on the National Ignition Facility Physics of Plasmas. 17
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