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1. Numerical Modeling of the Sensitivity of X-Ray Driven Implosions to Low-Mode Flux Asymmetries

2. An ethnographic exploration of the effectiveness of formal leadership development programmes within the context of the UK and New Zealand public sectors

3. Hohlraum Living Document 2019Nov5

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

5. Exploring implosion designs for increased compression on the National Ignition Facility using high density carbon ablators

7. Experimental and calculational investigation of laser-heated additive manufactured foams

9. The first target experiments on the National Ignition Facility

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

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

15. Three-dimensional modeling and hydrodynamic scaling of National Ignition Facility implosions

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

18. Conceptual design of the subscale orbital fluid transfer experiment (SOFTE)

19. Heat transport modeling of the dot spectroscopy platform on NIF

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

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

24. Progress towards a more predictive model for hohlraum radiation drive and symmetry

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

26. Initial experimental demonstration of the principles of a xenon gas shield designed to protect optical components from soft x-ray induced opacity (blanking) in high energy density experiments

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

28. Indirect drive ignition at the National Ignition Facility

29. Experimental results of radiation-driven, layered deuterium-tritium implosions with adiabat-shaped drives at the National Ignition Facility

30. A high-speed two-frame, 1-2 ns gated X-ray CMOS imager used as a hohlraum diagnostic on the National Ignition Facility (invited)

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

32. Progress in detailed modelling of low foot and high foot implosion experiments on the National Ignition Facility

33. Performance of indirectly driven capsule implosions on NIF using adiabat-shaping

34. Towards a more universal understanding of radiation drive in gas-filled hohlraums

35. Performance of indirectly driven capsule implosions on the National Ignition Facility using adiabat-shaping

36. Three-dimensional simulations of low foot and high foot implosion experiments on the National Ignition Facility

38. Hydrodynamic instabilities and mix studies on NIF: predictions, observations, and a path forward

39. An ethnographic exploration of the effectiveness of formal leadership development programmes within the context of the UK and New Zealand public sectors

40. First results of radiation-driven, layered deuterium-tritium implosions with a 3-shock adiabat-shaped drive at the National Ignition Facility

43. Cryogenic tritium-hydrogen-deuterium and deuterium-tritium layer implosions with high density carbon ablators in near-vacuum hohlraums

44. Near-vacuum hohlraums for driving fusion implosions with high density carbon ablatorsa)

45. Adiabat-shaping in indirect drive inertial confinement fusion

46. First High-Convergence Cryogenic Implosion in a Near-Vacuum Hohlraum

47. Thin Shell, High Velocity Inertial Confinement Fusion Implosions on the National Ignition Facility

49. Three-dimensional hydrodynamics of the deceleration stage in inertial confinement fusion

50. Erratum: “Effect of the mounting membrane on shape in inertial confinement fusion implosions” [Phys. Plasmas 22, 022704 (2015)]

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