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1. Demonstration of hot-spot fuel gain exceeding unity in direct-drive inertial confinement fusion implosions

2. Demonstration of a hydrodynamically equivalent burning plasma in direct-drive inertial confinement fusion

3. Publisher Correction: Demonstration of a hydrodynamically equivalent burning plasma in direct-drive inertial confinement fusion

4. Analysis of trends in experimental observables and reconstruction of the implosion dynamics for direct-drive cryogenic targets on OMEGA

7. Evidence of non-Maxwellian ion velocity distributions in spherical shock-driven implosions

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

9. Demonstration of neutron-yield enhancement by laser preheating and magnetization of laser-driven cylindrical implosions

11. Measurements of low-mode asymmetries in the areal density of laser-direct-drive deuterium–tritium cryogenic implosions on OMEGA using neutron spectroscopy

12. Publisher's Note: “Analysis of core asymmetries in inertial confinement fusion implosions using three-dimensional hot-spot reconstruction” [Phys. Plasmas 29, 082705 (2022)]

15. Analysis of core asymmetries in inertial confinement fusion implosions using three-dimensional hot-spot reconstruction

16. Bound on hot-spot mix in high-velocity, high-adiabat direct-drive cryogenic implosions based on comparison of absolute x-ray and neutron yields

18. Effect of Strongly Magnetized Electrons and Ions on Heat Flow and Symmetry of Inertial Fusion Implosions

19. Core Performance and Mix in Direct-Drive Spherical Implosions on Omega

21. Nuclear Diagnostics of ICF

22. Progress in Cryogenic Target Implosions on OMEGA

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

24. Enhanced laser-energy coupling with small-spot distributed phase plates (SG5-650) in OMEGA DT cryogenic target implosions

25. First spectral measurement of deuterium-tritium fusion γ rays in inertial fusion experiments

26. T–T Neutron Spectrum from Inertial Confinement Implosions

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

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

30. Mitigation of mode-one asymmetry in laser-direct-drive inertial confinement fusion implosions

32. Reconstructing 3D asymmetries in laser-direct-drive implosions on OMEGA

33. Using millimeter-sized carbon–deuterium foils for high-precision deuterium–tritium neutron spectrum measurements in direct-drive inertial confinement fusion at the OMEGA laser facility

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

35. Experimental validation of low-Z ion-stopping formalisms around the Bragg peak in high-energy-density plasmas

36. Direct-Drive Inertial Confinement Fusion Implosions on Omega

38. Energy Flow in Thin Shell Implosions and Explosions

39. Constraining physical models at gigabar pressures

40. The rate of development of atomic mixing and temperature equilibration in inertial confinement fusion implosions

43. H2(p,γ)He3 cross section measurement using high-energy-density plasmas

44. Impact of stalk on directly driven inertial confinement fusion implosions

46. Response of a lead-free borosilicate-glass microchannel plate to 14-MeV neutrons and γ-rays

47. Deuteron breakup induced by 14-MeV neutrons from inertial confinement fusion

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