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

3. Demonstration of high-energy 2[omega] (526.5 nm) operation on the National Ignition Facility Laser System

4. The first target experiments on the National Ignition Facility

5. Shock timing on the National Ignition Facility: The first precision tuning series

6. Shock timing on the National Ignition Facility: First experiments

7. Symmetry tuning with megajoule laser pulses at the National Ignition Facility

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

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

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

13. Description of the NIF Laser

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

15. Adiabat-shaping in indirect drive inertial confinement fusion

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

17. Nuclear imaging of the fuel assembly in ignition experiments

18. Hohlraum energetics scaling to 520 TW on the National Ignition Facility

19. The first experiments on the National Ignition Facility

20. The National Ignition Facility: beam area increase

21. Achieving full 1.8 MJ, 500 TW laser performance on the National Ignition Facility

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

23. Precision Shock Tuning on the National Ignition Facility

24. Shock timing experiments on the National Ignition Facility: Initial results and comparison with simulation

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

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

27. The national ignition facility: Status and performance of the world’s largest laser system for the high energy density and inertial confinement fusion

28. The National Ignition Facility 2007 laser performance status

29. National Ignition Facility laser performance status

30. The first target experiments on the National Ignition Facility

31. Laser coupling to reduced-scale hohlraum targets at the Early Light Program of the National Ignition Facility

32. The national ignition facility performance status

33. Laser coupling to reduced-scale targets at NIF Early Light

34. X-ray flux and X-ray burnthrough experiments on reduced-scale targets at the NIF and OMEGA lasers

35. Design and Performance of the Main Amplifier System for the National Ignition Facility

36. Flashlamp-Pumped ND:Glass Amplifiers for the National Ignition Facility

37. The first experiments on the national ignition facility

45. Flashlamp pumping of Nd:glass

48. The National Ignition Facility: beam area increase

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