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51. Implosion performance of subscale beryllium capsules on the NIF

52. Approaching a burning plasma on the NIF

53. Beyond alpha-heating: driving inertially confined fusion implosions toward a burning-plasma state on the National Ignition Facility

58. Design of first experiment to achieve fusion target gain 1

60. Beryllium capsule implosions at a case-to-capsule ratio of 3.7 on the National Ignition Facility

61. Using a 2-shock 1D platform at NIF to measure the effect of convergence on mix and symmetry

62. Developing an Experimental Basis for Understanding Transport in NIF Hohlraum Plasmas

63. Implosion shape control of high-velocity, large case-to-capsule ratio beryllium ablators at the National Ignition Facility

64. A near one-dimensional indirectly driven implosion at convergence ratio 30

65. Exploring the limits of case-to-capsule ratio, pulse length, and picket energy for symmetric hohlraum drive on the National Ignition Facility Laser

66. Ablative stabilization of Rayleigh-Taylor instabilities resulting from a laser-driven radiative shock

67. Comparison of plastic, high density carbon, and beryllium as indirect drive NIF ablators

68. Late-time mixing and turbulent behavior in high-energy-density shear experiments at high Atwood numbers

69. How high energy fluxes may affect Rayleigh–Taylor instability growth in young supernova remnants

70. Diagnostic examination of Generation 2 lithium-ion cells and assessment ofperformance degradation mechanisms.

71. Thermonuclear reactions probed at stellar-core conditions with laser-based inertial-confinement fusion

72. A platform for studying the Rayleigh–Taylor and Richtmyer–Meshkov instabilities in a planar geometry at high energy density at the National Ignition Facility

73. Late-Time Mixing Sensitivity to Initial Broadband Surface Roughness in High-Energy-Density Shear Layers

75. Temporal evolution of the two-shock implosion on the National Ignition Facility

76. Images of the gold bubble feature in NIF Gas-Filled Ignition Hohlraums

77. Symmetry tuning of a near one-dimensional 2-shock platform for code validation at the National Ignition Facility

78. The size and structure of the laser entrance hole in gas-filled hohlraums at the National Ignition Facility

79. Temperature and thickness evolution and epitaxial breakdown in highly strained BiFeO3thin films

81. Precision measurement of theKα transitions in heliumlikeGe30+

83. Single line-of-sight dual energy backlighter for mix width experiments

84. Radiation transport and energetics of laser-driven half-hohlraums at the National Ignition Facility

85. Progress in hohlraum physics for the National Ignition Facility

86. The high-foot implosion campaign on the National Ignition Facility

87. Novel Characterization of Capsule X-Ray Drive at the National Ignition Facility

88. Streaked radiography of an irradiated foam sample on the National Ignition Facility

89. Heavy-ion fusion driver research at Berkeley and Livermore

90. Absolute x-ray yields from laser-irradiated germanium-doped low-density aerogels

96. Progress on the scaled beam-combining experiment at LBNL

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