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1. Multi-Messenger Measurements of the Static Structure of Shock-Compressed Liquid Silicon at 100 GPa

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

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

4. Frustraum 1100 experimental campaign on the national ignition facility

5. Modeling ablator defects as a source of mix in high-performance implosions at the National Ignition Facility

6. Multimessenger measurements of the static structure of shock-compressed liquid silicon at 100 GPa

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

8. Burning plasma achieved in inertial fusion

10. Absolute Equation-of-State Measurement for Polystyrene from 25 to 60 Mbar Using a Spherically Converging Shock Wave

11. Design of the first fusion experiment to achieve target energy gain G>1

12. Observations and properties of the first laboratory fusion experiment to exceed a target gain of unity

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

14. Evidence of hydrogen-helium immiscibility at Jupiter-interior conditions

16. Yield and compression trends and reproducibility at NIF*

17. Increased compression in HDC-based ablator implosions using modified drive profile

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

19. Measurements of improved stability to achieve higher fuel compression in ICF

20. Analysis of laser shock experiments on precompressed samples using a quartz reference and application to warm dense hydrogen and helium

21. Shock compression of stishovite and melting of silica at planetary interior conditions

22. Planetary science. Shock compression of stishovite and melting of silica at planetary interior conditions.

23. Weak ferrimagnetism and multiple magnetization reversal in {\alpha}-Cr3(PO4)2

25. First large capsule implosions in a frustum-shaped hohlraum

26. Same-sided successive-shock HED instability experiments

27. Reply to: Reconsidering X-ray plasmons

28. Publisher Correction: Burning plasma achieved in inertial fusion

29. Publisher's Note: “First graded metal pushered single shell capsule implosions on the National Ignition Facility” [Phys. Plasmas 29, 052707 (2022)]

30. FY20 LLNL Experimental Programs at Omega

31. Control of low-mode drive asymmetry in an efficient long-pulse low gas-fill density Hohlraum

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

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

34. FY19 LLNL Experimental Programs at Omega

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

38. Experimental achievement and signatures of ignition at the National Ignition Facility

39. Design of an inertial fusion experiment exceeding the Lawson criterion for ignition

40. FY18 LLNL Experimental Programs at Omega

41. Mechanisms of shape transfer and preheating in indirect-drive double shell collisions

42. Hydroscaling indirect-drive implosions on the National Ignition Facility

43. First graded metal pushered single shell capsule implosions on the National Ignition Facility

44. Exploring implosion designs for increased compression on the National Ignition Facility using high density carbon ablators

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

46. FY17 LLNL Omega Experimental Programs

47. Metastability of Liquid Water Freezing into Ice VII under Dynamic Compression

48. Achieving record hot spot energies with large HDC implosions on NIF in HYBRID-E

50. FY16 LLNL Omega Experimental Programs

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