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1. First bromine doped cryogenic implosion at the National Ignition Facility

3. First measurement of the $^{10}{\rm B}(\alpha,n)^{13}{\rm N}$ reaction in an inertial confinement fusion implosion at the National Ignition Facility: Initial steps toward the development of a radiochemistry mix diagnostic

4. The first cryogenic DT layered, beryllium capsule implosion at the National Ignition Facility

5. Plasma stopping-power measurements reveal transition from non-degenerate to degenerate plasmas

7. First bromine doped cryogenic implosion at the National Ignition Facility

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

10. Alpha heating of indirect-drive layered implosions on the National Ignition Facility

11. X-ray source characterization and sample heating on x-ray diffraction experiments at the National Ignition Facility

12. Yield degradation mechanisms for two-shock capsules evaluated through simulations

15. First measurement of the 10B(α,n)13N reaction in an inertial confinement fusion implosion at the National Ignition Facility: Initial steps toward the development of a radiochemistry mix diagnostic

18. Thermal decoupling of deuterium and tritium during the inertial confinement fusion shock-convergence phase

19. Thermal decoupling of deuterium and tritium during the ICF shock-convergence phase

22. Deficiencies in compression and yield in x-ray-driven implosions

23. Principal factors in performance of indirect-drive laser fusion experiments

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

25. Experiments to explore the influence of pulse shaping at the National Ignition Facility

26. Hotspot parameter scaling with velocity and yield for high-adiabat layered implosions at the National Ignition Facility

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

29. The National Ignition Facility (NIF) Diagnostic Set at the Completion of the National Ignition Campaign (NIC) September 2013

30. Progress of indirect drive inertial confinement fusion in the United States

31. Toward a burning plasma state using diamond ablator inertially confined fusion (ICF) implosions on the National Ignition Facility (NIF)

32. Using a 2-shock 1D platform at NIF to measure the effect of convergence on mix and symmetry

35. High-Performance Indirect-Drive Cryogenic Implosions at High Adiabat on the National Ignition Facility

36. Hydrodynamic instabilities seeded by the X-ray shadow of ICF capsule fill-tubes

37. Development of the CD Symcap platform to study gas-shell mix in implosions at the National Ignition Facility

38. Nuclear spectrometry of 9.6 h 196Aum2 and the reaction of 197Au with fast neutrons.

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

40. First D+D neutron image at the National Ignition Facility

41. A near one-dimensional indirectly driven implosion at convergence ratio 30

42. The high velocity, high adiabat, “Bigfoot” campaign and tests of indirect-drive implosion scaling

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

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

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

48. Publisher’s Note: Development of improved radiation drive environment for high foot implosions at the National Ignition Facility [Phys. Rev. Lett. 117 , 225002 (2016)]

49. Use of 41Ar production to measure ablator areal density in NIF beryllium implosions

50. Development of Improved Radiation Drive Environment for High Foot Implosions at the National Ignition Facility

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