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1. Structured photocathodes for improved high-energy x-ray efficiency in streak cameras.

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

4. Identifying, quantifying, and mitigating background with the time-resolved x-ray diffraction platform at the National Ignition Facility.

5. Measurements of K-edge and L-edge extended x-ray absorption fine structure at the national ignition facility (invited).

6. Time resolved x-ray diffraction using the flexible imaging diffraction diagnostic for laser experiments (FIDDLE) at the National Ignition Facility (NIF): Preliminary assessment of diffraction precision.

7. Developing time-resolved x-ray diffraction diagnostics at the National Ignition Facility (invited).

8. Electrical design of the flexible imaging diffraction diagnostic for laser experiments (FIDDLE) at the National Ignition Facility (NIF)-Requirements, design, and performance.

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

10. Achievement of Target Gain Larger than Unity in an Inertial Fusion Experiment.

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

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

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

14. Optimized x-ray emission from 10 ns long germanium x-ray sources at the National Ignition Facility.

15. Publisher Correction: Burning plasma achieved in inertial fusion.

16. Burning plasma achieved in inertial fusion.

17. X-ray imaging of Rayleigh-Taylor instabilities using Fresnel zone plate at the National Ignition Facility.

18. Long duration x-ray source development for x-ray diffraction at the National Ignition Facility.

19. Fresnel zone plate development for x-ray radiography of hydrodynamic instabilities at the National Ignition Facility.

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

22. Image-plate sensitivity to x rays at 2 to 60 keV.

23. The Crystal Backlighter Imager: A spherically bent crystal imager for radiography on the National Ignition Facility.

24. On the system stability and calibration of the image plate/scanner system for plasma diagnosis at the National Ignition Facility.

25. An x-ray optic calibration facility for high energy density diagnostics.

26. Implementing time resolved electron temperature capability at the NIF using a streak camera.

27. Using multiple x-ray emission images of inertially confined implosions to identify spatial variations and estimate confinement volumes (invited).

28. Simultaneous visualization of wall motion, beam propagation, and implosion symmetry on the National Ignition Facility (invited).

29. The single-line-of-sight, time-resolved x-ray imager diagnostic on OMEGA.

30. Investigating the relationship between noise transfer inside the x-ray framing cameras and their imaging ability.

31. The dilation aided single-line-of-sight x-ray camera for the National Ignition Facility: Characterization and fielding.

32. Improving the off-axis spatial resolution and dynamic range of the NIF X-ray streak cameras (invited).

33. Comparison of implosion core metrics: A 10 ps dilation X-ray imager vs a 100 ps gated microchannel plate.

34. Spatial resolution measurements of the advanced radiographic capability x-ray imaging system at energies relevant to Compton radiography.

35. Characterization of x-ray framing cameras for the National Ignition Facility using single photon pulse height analysis.

36. A comparison of "flat fielding" techniques for x-ray framing cameras.

37. Automated analysis of hot spot X-ray images at the National Ignition Facility.

39. A high-speed two-frame, 1-2 ns gated X-ray CMOS imager used as a hohlraum diagnostic on the National Ignition Facility (invited).

40. Observation of hohlraum-wall motion with spectrally selective x-ray imaging at the National Ignition Facility.

41. The Well Organised Working Environment: A mixed methods study.

42. Advances in x-ray framing cameras at the National Ignition Facility to improve quantitative precision in x-ray imaging.

43. Demonstration of High Performance in Layered Deuterium-Tritium Capsule Implosions in Uranium Hohlraums at the National Ignition Facility.

44. Staff perceptions of a Productive Community Services implementation: A qualitative interview study.

45. Thin shell, high velocity inertial confinement fusion implosions on the national ignition facility.

46. High quantum efficiency photocathode simulation for the investigation of novel structured designs.

47. Development of a dual MCP framing camera for high energy x-rays.

48. Time-resolved measurements of the hot-electron population in ignition-scale experiments on the National Ignition Facility (invited).

49. Diagnosing residual motion via the x-ray self emission from indirectly driven inertial confinement implosions.

50. Investigating high speed phenomena in laser plasma interactions using dilation x-ray imager (invited).

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