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51. Lessons learned from BaBar silicon vertex tracker, limits, and future perspectives of the detector

52. Application of cross-beam energy transfer to control drive symmetry in ICF implosions in low gas fill Hohlraums at the National Ignition Facility

53. Measurements of enhanced performance in an indirect drive inertial confinement fusion experiment when reducing the contact area of the capsule support

54. Hot-spot mix in large-scale HDC implosions at NIF

55. Hotspot parameter scaling with velocity and yield for high-adiabat layered implosions at the National Ignition Facility

57. Status and prospects of the BaBar SVT

58. The BaBar silicon-vertex tracker: performance, running experience, and radiation-damage studies

60. Hotspot conditions achieved in inertial confinement fusion experiments on the National Ignition Facility

61. Symmetric fielding of the largest diamond capsule implosions on the NIF

62. Achieving 280 Gbar hot spot pressure in DT-layered CH capsule implosions at the National Ignition Facility

64. Maintaining low-mode symmetry control with extended pulse shapes for lower-adiabat Bigfoot implosions on the National Ignition Facility

67. What can be learned from the BABAR Silicon Vertex Tracker running experience

68. Radiation damage studies for the B aB ar Silicon Vertex Tracker

69. Heavy ion fusion (HIF) driver point designs

71. Overview of US heavy-ion fusion progress and plans

74. NIF capsule performance modeling

75. Towards an integrated model of the NIC layered implosions

76. Shock timing on the National Ignition Facility: First experiments

79. The BaBar Silicon Vertex Tracker: performance and radiation damage studies

80. Radiation hardness and monitoring of the B aB ar vertex tracker

81. Sensor performance of the B aB ar Silicon Vertex Tracker after 4 years of data taking

86. Status and future plans of the BABAR Silicon Vertex Tracker

87. Performance of the BABAR silicon vertex tracker

89. Implosion performance of subscale beryllium capsules on the NIF

90. Approaching a burning plasma on the NIF

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

92. Toward a burning plasma state using diamond ablator inertially confined fusion (ICF) implosions on the National Ignition Facility (NIF)

93. Energy transfer between lasers in low-gas-fill-density hohlraums

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

95. High-Performance Indirect-Drive Cryogenic Implosions at High Adiabat on the National Ignition Facility

96. Increasing stagnation pressure and thermonuclear performance of inertial confinement fusion capsules by the introduction of a high-Z dopant

97. The BaBar silicon vertex tracker, performance and running experience

98. The B AB AR detector

99. Development of the CD Symcap platform to study gas-shell mix in implosions at the National Ignition Facility

100. The BABAR detector

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