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151. A novel particle time of flight diagnostic for measurements of shock- and compression-bang times in D3He and DT implosions at the NIF

152. Total energy loss to fast ablator-ions and target capacitance of direct-drive implosions on OMEGA

153. Vulnerability of CMOS image sensors in megajoule class laser harsh environment

154. OMEGA polar-drive target designs

155. Measurements of theT(t,2n)He4Neutron Spectrum at Low Reactant Energies from Inertial Confinement Implosions

157. Determination of the deuterium-tritium branching ratio based on inertial confinement fusion implosions

159. D-T gamma-to-neutron branching ratio determined from inertial confinement fusion plasmas

160. Hot-spot mix in ignition-scale implosions on the NIF

161. Crossed-beam energy transfer in direct-drive implosions

162. Increasing Hydrodynamic Efficiency by Reducing Cross-Beam Energy Transfer in Direct-Drive-Implosion Experiments

163. A spherical crystal imager for OMEGA EP

165. Time-Resolved Measurements of Hot-Electron Equilibration Dynamics in High-Intensity Laser Interactions with Thin-Foil Solid Targets

166. Evidence for Stratification of Deuterium-Tritium Fuel in Inertial Confinement Fusion Implosions

169. Diagnosing implosions at the national ignition facility with X-ray spectroscopy

171. Measurements of the Differential Cross Sections for the Elasticn−H3andn−H2Scattering at 14.1 MeV by Using an Inertial Confinement Fusion Facility

172. The coincidence counting technique for orders of magnitude background reduction in data obtained with the magnetic recoil spectrometer at OMEGA and the NIF

173. Calibration of a Thomson parabola ion spectrometer and Fujifilm imaging plate detectors for protons, deuterons, and alpha particles

174. Neutron time-of-flight measurements on the national ignition facility

175. Scaling hot-electron generation to long-pulse, high-intensity laser–solid interactions

176. Initial cone-in-shell fast-ignition experiments on OMEGA

177. The experimental plan for cryogenic layered target implosions on the National Ignition Facility—The inertial confinement approach to fusion

178. Development of Compton radiography of inertial confinement fusion implosions

181. Inertial Confinement Fusion Using the OMEGA Laser System

185. Triple-picket warm plastic-shell implosions on OMEGA

186. Scaling Hot-Electron Generation to High-Power, Kilojoule-Class Laser-Solid Interactions

187. National Ignition Facility neutron time-of-flight measurements (invited)

190. Experimental study of neutron induced background noise on gated x-ray framing cameras

191. High-intensity laser-plasma interaction with wedge-shaped-cavity targets

192. The National Ignition Facility neutron time-of-flight system and its initial performance (invited)

193. Design of High-Neutron-Yield, Polar-drive targets for diagnostic activation experiments on the NIF

194. Progress in cryogenic target implosions on OMEGA

195. Inferring the electron temperature and density of shocked liquid deuterium using inelastic X-ray scattering

196. Performance of and initial results from the OMEGA EP Laser System

197. Experimental evaluation of neutron induced noise on gated x-ray framing cameras

198. Probing high areal-density cryogenic deuterium-tritium implosions using downscattered neutron spectra measured by the magnetic recoil spectrometer

199. Shock-tuned cryogenic-deuterium-tritium implosion performance on Omega

200. Implosion Experiments using Glass Ablators for Direct-Drive Inertial Confinement Fusion

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