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

2. Insensitivity of a turbulent laser-plasma dynamo to initial conditions

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

4. Strong suppression of heat conduction in a laboratory replica of galaxy-cluster turbulent plasmas

5. Time-resolved fast turbulent dynamo in a laser plasma

6. Evidence for suprathermal ion distribution in burning plasmas

7. Measurement of early time outer laser beam reflection inside a cylindrical hohlraum at the National Ignition Facility

8. Transport of high-energy charged particles through spatially-intermittent turbulent magnetic fields

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

10. Numerical modeling of laser-driven experiments aiming to demonstrate magnetic field amplification via turbulent dynamo

11. Laboratory evidence of dynamo amplification of magnetic fields in a turbulent plasma

12. Ex situ calibration of the scattered-light time-history diagnostic on the National Ignition Facility.

13. Rapid calibration plan for NIF's Near Backscatter Imager (NBI).

14. Burning plasma achieved in inertial fusion

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

17. Development of an Interpretive Simulation Tool for the Proton Radiography Technique

19. Observation of magnetic field generation via the Weibel instability in interpenetrating plasma flows

20. Raman backscatter as a remote laser power sensor in high-energy-density plasmas

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

22. Publisher Correction: Burning plasma achieved in inertial fusion

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

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

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

26. Baseline mutational profiles of patients with carcinoma of unknown primary origin enrolled in the CUPISCO study

27. Experimental demonstration of >20 kJ laser energy coupling in 1-cm hydrocarbon-filled gas pipe targets via inverse Bremsstrahlung absorption with applications to MagLIF

29. Evidence for suprathermal ion distribution in burning plasmas

30. Experimental evidence of early-time saturation of the ion-Weibel instability in counterstreaming plasmas of CH, Al, and Cu

31. Specular reflections (“glint”) of the inner beams in a gas-filled cylindrical hohlraum

32. Insensitivity of a turbulent laser-plasma dynamo to initial conditions

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

34. Hybrid capture-based genomic profiling of circulating tumor DNA from patients with estrogen receptor-positive metastatic breast cancer

38. Re: MultiparametricMagnetic Resonance Imaging as a Noninvasive Assessment of Tumor Response to Neoadjuvant Pembrolizumab in Muscle-Invasive Bladder Cancer: Preliminary Findings from the PURE-01 Study

39. Implementation of 21st Century Cures Act Expanded Access Policies Requirements

42. Urothelial cancer harbours EGFR and HER2 amplifications and exon 20 insertions

43. Nonlinear Evolution of the Ion-Weibel Instability in Interpenetrating Plasmas of CH, Al, and Cu

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

49. The Scattered Light Time-history Diagnostic suite at the National Ignition Facility

50. Investigation of heat transport using directly driven gold spheres

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