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44 results on '"Seka W"'

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1. Lawson Criterion for Ignition Exceeded in an Inertial Fusion Experiment

2. Direct Measurements of DT Fuel Preheat from Hot Electrons in Direct-Drive Inertial Confinement Fusion

3. Anomalous Absorption by the Two-Plasmon Decay Instability

4. First Observation of Cross-Beam Energy Transfer Mitigation for Direct-Drive Inertial Confinement Fusion Implosions Using Wavelength Detuning at the National Ignition Facility

5. Origins and Scaling of Hot-Electron Preheat in Ignition-Scale Direct-Drive Inertial Confinement Fusion Experiments

6. Experimental Investigation of the Collective Raman Scattering of Multiple Laser Beams in Inhomogeneous Plasmas

7. Using Inertial Fusion Implosions to Measure theT+He3Fusion Cross Section at Nucleosynthesis-Relevant Energies

8. Demonstration of Fuel Hot-Spot Pressure in Excess of 50 Gbar for Direct-Drive, Layered Deuterium-Tritium Implosions on OMEGA

9. Experimental Evidence of the Collective Brillouin Scattering of Multiple Laser Beams Sharing Acoustic Waves

11. Gigabar Spherical Shock Generation on the OMEGA Laser

12. Exploration of the Transition from the Hydrodynamiclike to the Strongly Kinetic Regime in Shock-Driven Implosions

14. Laser-Beam Zooming to Mitigate Crossed-Beam Energy Losses in Direct-Drive Implosions

16. Saturation of the Two-Plasmon Decay Instability in Long-Scale-Length Plasmas Relevant to Direct-Drive Inertial Confinement Fusion

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

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

20. Demonstration of the Highest Deuterium-Tritium Areal Density Using Multiple-Picket Cryogenic Designs on OMEGA

21. High-Areal-Density Fuel Assembly in Direct-Drive Cryogenic Implosions

22. Role of Hot-Electron Preheating in the Compression of Direct-Drive Imploding Targets with CryogenicD2Ablators

23. Intensity Limits for Propagation of0.527 μmLaser Beams through Large-Scale-Length Plasmas for Inertial Confinement Fusion

24. Effects of Nonuniform Illumination on Implosion Asymmetry in Direct-Drive Inertial Confinement Fusion

25. Dependence of Shell Mix on Feedthrough in Direct Drive Inertial Confinement Fusion

27. Observation of Saturation of Energy Transfer between Copropagating Beams in a Flowing Plasma

29. Shell Mix in the Compressed Core of Spherical Implosions

30. Inertial Confinement Fusion with Tetrahedral Hohlraums at OMEGA

31. Hohlraum Radiation Drive Measurements on the Omega Laser

35. Large-Amplitude Ion Acoustic Waves in a Laser-Produced Plasma

39. Dynamics of High-ZPlasmas Produced by a Short-Wavelength Laser

41. Using Inertial Fusion Implosions to Measure the T+³He Fusion Cross Section at Nucleosynthesis-Relevant Energies.

42. Achievement of Target Gain Larger than Unity in an Inertial Fusion Experiment.

43. Intensity limits for propagation of 0.527 microm laser beams through large-scale-length plasmas for inertial confinement fusion.

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