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1. The National Ignition Facility: Status and Plans for Laser Fusion and High-Energy-Density Experimental Studies

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

3. The first target experiments on the National Ignition Facility

9. Timely Delivery of Laser Inertial Fusion Energy (LIFE)

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

11. Capsule Ablator Inflight Performance Measurements Via Streaked Radiography Of ICF Implosions On The NIF*

12. The National Ignition Facility: Transition to a User Facility

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

14. Overview: Development of the National Ignition Facility and the Transition to a User Facility for the Ignition Campaign and High Energy Density Scientific Research

15. Description of the NIF Laser

16. Erratum: “Review of the National Ignition Campaign 2009-2012” [Phys. Plasmas 21, 020501 (2014)]

17. Early-Time Symmetry Tuning in the Presence of Cross-Beam Energy Transfer in ICF Experiments on the National Ignition Facility

18. Progress toward ignition at the National Ignition Facility

19. Performance of High-Convergence, Layered DT Implosions with Extended-Duration Pulses at the National Ignition Facility

20. Onset of Hydrodynamic Mix in High-Velocity, Highly Compressed Inertial Confinement Fusion Implosions

21. Progress towards ignition on the National Ignition Facility

22. Nuclear imaging of the fuel assembly in ignition experiments

23. X-ray driven implosions at ignition relevant velocities on the National Ignition Facility

24. Radiative shocks produced from spherical cryogenic implosions at the National Ignition Facility

25. Lead (Pb) Hohlraum: Target for Inertial Fusion Energy

27. Progress in the indirect-drive National Ignition Campaign

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

29. The NIF: An international high energy density science and inertial fusion user facility.

30. Assembly of High-Areal-Density Deuterium-Tritium Fuel from Indirectly Driven Cryogenic Implosions

31. Cryogenic thermonuclear fuel implosions on the National Ignition Facility

32. Direct Measurement of Energetic Electrons Coupling to an Imploding Low-Adiabat Inertial Confinement Fusion Capsule

33. Multistep redirection by cross-beam power transfer of ultrahigh-power lasers in a plasma

35. Comparison of Nd:phosphate glass, Yb:YAG and Yb:S-FAP laser beamlines for laser inertial fusion energy (LIFE) [Invited]

38. Point design targets, specifications, and requirements for the 2010 ignition campaign on the National Ignition Facility

39. Capsule implosion optimization during the indirect-drive National Ignition Campaign

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

42. Analysis of the National Ignition Facility ignition hohlraum energetics experiments

43. Publisher’s Note: Demonstration of Ignition Radiation Temperatures in Indirect-Drive Inertial Confinement Fusion Hohlraums [Phys. Rev. Lett.106, 085004 (2011)]

44. Demonstration of Ignition Radiation Temperatures in Indirect-Drive Inertial Confinement Fusion Hohlraums

45. Capsule performance optimization in the National Ignition Campaign

50. Experiments and multiscale simulations of laser propagation through ignition-scale plasmas

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