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1. Demonstration of low-mode shape control in indirect-drive double shell implosions at the NIF

2. Characterizing the effects of drive asymmetries, component offsets, and joint gaps in double shell capsule implosions.

6. Measurements of fusion reaction history in inertially confined burning plasmas.

8. Mechanisms of shape transfer and preheating in indirect-drive double shell collisions

9. Mitigating the Joint Feature in Double Shell Implosion Simulations

10. Single and double shell ignition targets for the national ignition facility at 527 nm

11. Detrimental effects and mitigation of the joint feature in double shell implosion simulations

12. Constraining computational modeling of indirect drive double shell capsule implosions using experiments

13. Demonstration of Scale-Invariant Rayleigh-Taylor Instability Growth in Laser-Driven Cylindrical Implosion Experiments

14. Hydro-scaling of direct-drive cylindrical implosions at the OMEGA and the National Ignition Facility

17. Experimental study of energy transfer in double shell implosions

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

20. Design considerations for indirectly driven double shell capsules

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

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

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

25. Performance of beryllium targets with full-scale capsules in low-fill 6.72-mm hohlraums on the National Ignition Facility

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

27. Indirect-drive ablative Richtmyer Meshkov node scaling

31. Development of a Big Area BackLighter for high energy density experiments

35. The neutron imaging diagnostic at NIF (invited)

39. Modeling the National Ignition Facility neutron imaging system

41. TRIDENT high-energy-density facility experimental capabilities and diagnostics

42. Long pulse laser driven shock wave loading for dynamic materials experiments

44. TRANSIENT IMAGING DISPLACEMENT INTERFEROMETRY APPLIED TO SHOCK LOADING.

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

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

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