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

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

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

4. Burning plasma achieved in inertial fusion

5. The crucial role of diagnostics in achieving ignition on the National Ignition Facility (NIF).

6. Measurement of mix at the fuel–ablator interface in indirectly driven capsule implosions on the National Ignition Facility

7. Time-resolved X-ray diffraction diagnostic development for the National Ignition Facility

8. The Magnetized Indirect Drive Project on the National Ignition Facility

9. Extended X-ray absorption fine structure of dynamically-compressed copper up to 1 terapascal

10. National Diagnostic Working Group (NDWG) for inertial confinement fusion (ICF)/high-energy density (HED) science: The whole exceeds the sum of its parts

11. Performance scaling with an applied magnetic field in indirect-drive inertial confinement fusion implosions

12. Publisher Correction: Burning plasma achieved in inertial fusion

13. FY19 LLNL Experimental Programs at Omega

14. Increased Ion Temperature and Neutron Yield Observed in Magnetized Indirectly Driven D2 -Filled Capsule Implosions on the National Ignition Facility

17. FY18 LLNL Experimental Programs at Omega

19. FY17 LLNL Omega Experimental Programs

20. Observation of Hydrodynamic Flows in Imploding Fusion Plasmas on the National Ignition Facility

21. FY16 LLNL Omega Experimental Programs

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

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

26. The first target experiments on the National Ignition Facility

27. Optimized continuum x-ray emission from laser-generated plasma

28. Erratum: “First demonstration of ARC-accelerated proton beams at the National Ignition Facility” [Physics of Plasmas 26, 043110 (2019)]

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

30. Time-Resolved Fuel Density Profiles of the Stagnation Phase of Indirect-Drive Inertial Confinement Implosions

32. FY15 LLNL OMEGA Experimental Programs

33. 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

34. Production of relativistic electrons at subrelativistic laser intensities

35. Review of hydrodynamic instability experiments in inertially confined fusion implosions on National Ignition Facility

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

37. FY14 LLNL OMEGA Experimental Programs

39. CD44-specific nanoparticles for redox-triggered reactive oxygen species production and doxorubicin release

40. FY13 LLNL OMEGA Experimental Programs

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

42. First demonstration of ARC-accelerated proton beams at the National Ignition Facility

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

45. FY12 LLNL OMEGA Experimental Programs

46. FY11 LLNL OMEGA Experimental Programs

48. A “polar contact” tent for reduced perturbation and improved performance of NIF ignition capsules

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

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

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