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1. Experiments conducted in the burning plasma regime with inertial fusion implosions

2. The impact of low-mode symmetry on inertial fusion energy output in the burning plasma state

3. Bayesian inferences of electrical current delivered to shocked transmission lines.

4. Design of inertial fusion implosions reaching the burning plasma regime

5. Burning plasma achieved in inertial fusion

6. Publisher Correction: Burning plasma achieved in inertial fusion

7. Reaching a burning plasma and ignition using smaller capsules/Hohlraums, higher radiation temperatures, and thicker ablator/ice on the national ignition facility

8. Hohlraum Living Document 2019Nov5

9. Optimization of Backscatter and Symmetry for Laser Fusion Experiments Using Multiple Tunable Wavelengths

10. Specular reflections (“glint”) of the inner beams in a gas-filled cylindrical hohlraum

13. Symmetric Inertial Confinement Fusion Implosions at Ultra-High Laser Energies

14. The effects of multispecies Hohlraum walls on stimulated Brillouin scattering, Hohlraum dynamics, and beam propagation

15. Developing “inverted-corona” fusion targets as high-fluence neutron sources

16. Low mode implosion symmetry sensitivity in low gas-fill NIF cylindrical hohlraums

17. Application of plasma optics to precision control of laser energy deposition in laser-fusion experiments

18. The first target experiments on the National Ignition Facility

19. Foam-lined hohlraum, inertial confinement fusion experiments on the National Ignition Facility

20. Fill tube dynamics in inertial confinement fusion implosions with high density carbon ablators

23. Experimental demonstration of the reduced expansion of a laser-heated surface using a low density foam layer, pertaining to advanced hohlraum designs with less wall-motion

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

25. Understanding ICF hohlraums using NIF gated laser-entrance-hole images

26. Neutron Time-of-Flight Measurements of Charged-Particle Energy Loss in Inertial Confinement Fusion Plasmas

27. The Crystal Backlighter Imager: A spherically bent crystal imager for radiography on the National Ignition Facility

28. Simultaneous visualization of wall motion, beam propagation, and implosion symmetry on the National Ignition Facility (invited)

29. First demonstration of improved capsule implosions by reducing radiation preheat in uranium vs gold hohlraums

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

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

32. Development of new platforms for hydrodynamic instability and asymmetry measurements in deceleration phase of indirectly driven implosions on NIF

33. Fusion Energy Output Greater than the Kinetic Energy of an Imploding Shell at the National Ignition Facility

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

35. Variable convergence liquid layer implosions on the National Ignition Facility

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

37. Visualizing deceleration-phase instabilities in inertial confinement fusion implosions using an “enhanced self-emission” technique at the National Ignition Facility

38. Measuring the shock impedance mismatch between high-density carbon and deuterium at the National Ignition Facility

40. Update 2017 on Target Fabrication Requirements for High-Performance NIF Implosion Experiments

41. Stability of a magnetized Hall plasma discharge.

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

43. Examining the radiation drive asymmetries present in the high foot series of implosion experiments at the National Ignition Facility

44. The role of hot spot mix in the low-foot and high-foot implosions on the NIF

45. Symmetry control of an indirectly driven high-density-carbon implosion at high convergence and high velocity

46. The relationship between gas fill density and hohlraum drive performance at the National Ignition Facility

47. Applications and results of X-ray spectroscopy in implosion experiments on the National Ignition Facility

48. First Liquid Layer Inertial Confinement Fusion Implosions at the National Ignition Facility

49. Indirect drive ignition at the National Ignition Facility

50. Update 2015 on Target Fabrication Requirements for NIF Layered Implosions, with Emphasis on Capsule Support and Oxygen Modulations in GDP

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