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

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

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

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

5. Burning plasma achieved in inertial fusion

6. Capacitive Deionization -- defining a class of desalination technologies

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

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

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

10. Capacitive Deionization

11. Measurement of hydrodynamic instability growth during the deceleration of an inertial confinement fusion implosion

12. Recent and planned hydrodynamic instability experiments on indirect-drive implosions on the National Ignition Facility

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

15. Publisher Correction: Burning plasma achieved in inertial fusion

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

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

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

23. Corrigendum: Reaching 30% energy coupling efficiency for a high-density-carbon capsule in a gold rugby hohlraum on NIF (2021 Nucl. Fusion 64 086028)

24. Reaching 30% energy coupling efficiency for a high-density-carbon capsule in a gold rugby hohlraum on NIF

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

26. The effects of multispecies Hohlraum walls on stimulated Brillouin scattering, Hohlraum dynamics, and beam propagation

29. Experimental and calculational investigation of laser-heated additive manufactured foams

30. Evidence of Three-Dimensional Asymmetries Seeded by High-Density Carbon-Ablator Nonuniformity in Experiments at the National Ignition Facility

31. Record Energetics for an Inertial Fusion Implosion at NIF

33. Ultra-high aspect ratio pores milled in diamond via laser, ion and electron beam mediated processes

34. Integrated performance of large HDC-capsule implosions on the National Ignition Facility

35. Measurements of enhanced performance in an indirect drive inertial confinement fusion experiment when reducing the contact area of the capsule support

36. Hot-spot mix in large-scale HDC implosions at NIF

37. Symmetric fielding of the largest diamond capsule implosions on the NIF

38. Mixing in ICF implosions on the National Ignition Facility caused by the fill-tube

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

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

41. The National Direct-Drive Inertial Confinement Fusion Program

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

43. Beryllium capsule implosions at a case-to-capsule ratio of 3.7 on the National Ignition Facility

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

45. Increasing stagnation pressure and thermonuclear performance of inertial confinement fusion capsules by the introduction of a high-Z dopant

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

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

48. Vroeger is beter!

49. Review of hydro-instability experiments with alternate capsule supports in indirect-drive implosions on the National Ignition Facility

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

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