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1. Tripled yield in direct-drive laser fusion through statistical modelling

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

3. T–T Neutron Spectrum from Inertial Confinement Implosions

4. Progress in direct-drive inertial confinement fusion research at the laboratory for laser energetics

5. Direct-Drive Inertial Confinement Fusion Implosions on Omega

6. Heavy ion collisions at collider energies—Insights from PHENIX

7. First results from RHIC-PHENIX

9. Causes of fuel–ablator mix inferred from modeling of monochromatic time-gated radiography of OMEGA cryogenic implosions.

10. Density evolution after shock release from laser-driven polystyrene (CH) targets in inertial confinement fusion.

11. Direct-drive laser fusion: status, plans and future.

12. A novel photomultiplier tube neutron time-of-flight detector.

13. Observations of modulated shock waves in solid targets driven by spatially modulated laser beams.

14. Mitigating laser-imprint effects in direct-drive inertial confinement fusion implosions with an above-critical-density foam layer.

15. Analysis of trends in experimental observables: Reconstruction of the implosion dynamics and implications for fusion yield extrapolation for direct-drive cryogenic targets on OMEGA.

16. Wavelength-detuning cross-beam energy transfer mitigation scheme for direct drive: Modeling and evidence from National Ignition Facility implosions.

17. A framed, 16-image Kirkpatrick–Baez x-ray microscope.

18. Three-dimensional hydrodynamic simulations of OMEGA implosions.

19. A Particle X-ray Temporal Diagnostic (PXTD) for studies of kinetic, multi-ion effects, and ion-electron equilibration rates in Inertial Confinement Fusion plasmas at OMEGA (invited).

20. Optical smoothing of laser imprinting in planar-target experiments on OMEGA EP using multi-FM 1-D smoothing by spectral dispersion.

21. Neutron temporal diagnostic for high-yield deuterium–tritium cryogenic implosions on OMEGA.

22. Isolating and quantifying cross-beam energy transfer in direct-drive implosions on OMEGA and the National Ignition Facility.

23. Three-dimensional modeling of direct-drive cryogenic implosions on OMEGA.

24. Effects of fuel-capsule shimming and drive asymmetry on inertial-confinement-fusion symmetry and yield.

25. Assessment of ion kinetic effects in shock-driven inertial confinement fusion implosions using fusion burn imaging.

26. A method for in situ absolute DD yield calibration of neutron time-of-flight detectors on OMEGA using CR-39-based proton detectors.

27. Polar-direct-drive experiments on the National Ignition Facility.

28. Investigation of ion kinetic effects in direct-drive exploding-pusher implosions at the NIF.

29. Soft x-ray backlighting of cryogenic implosions using a narrowband crystal imaging system (invited).

30. Measurements of fuel and ablator ρR in Symmetry-Capsule implosions with the Magnetic Recoil neutron Spectrometer (MRS) on the National Ignition Facility.

31. A compact proton spectrometer for measurement of the absolute DD proton spectrum from which yield and ρR are determined in thin-shell inertial-confinement-fusion implosions.

32. A compact neutron spectrometer for characterizing inertial confinement fusion implosions at OMEGA and the NIF.

33. Improving the hot-spot pressure and demonstrating ignition hydrodynamic equivalence in cryogenic deuterium-tritium implosions on OMEGA.

34. Theory of hydro-equivalent ignition for inertial fusion and its applications to OMEGA and the National Ignition Facility.

35. Kinetic mix mechanisms in shock-driven inertial confinement fusion implosions.

36. Empirical assessment of the detection efficiency of CR-39 at high proton fluence and a compact, proton detector for high-fluence applications.

37. Shock-ignition relevant experiments with planar targets on OMEGA.

38. Effects of local defect growth in direct-drive cryogenic implosions on OMEGA.

39. Improving cryogenic deuterium-tritium implosion performance on OMEGA.

40. Polar-drive implosions on OMEGA and the National Ignition Facility.

41. Surface waves and electron acceleration from high-power, kilojoule-class laser interactions with underdense plasma.

42. OMEGA polar-drive target designs.

43. Experimental reduction of laser imprinting and Rayleigh-Taylor growth in spherically compressed, medium-Z-doped plastic targets.

44. Crossed-beam energy transfer in direct-drive implosions.

45. Development of the large neutron imaging system for inertial confinement fusion experiments.

46. A spherical crystal imager for OMEGA EP.

47. Collection of solid and gaseous samples to diagnose inertial confinement fusion implosions.

48. Using high-intensity laser-generated energetic protons to radiograph directly driven implosions.

49. Atomic mix in directly driven inertial confinement implosions.

50. The coincidence counting technique for orders of magnitude background reduction in data obtained with the magnetic recoil spectrometer at OMEGA and the NIF.

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