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1. Controlling morphology and improving reproducibility of magnetized liner inertial fusion experiments

2. Hot dense capsule implosion cores produced by z-pinch dynamic hohlraum radiation

4. Neutron time-of-flight detectors (nTOF) used at Sandia’s Z-Machine

6. Target Diagnostic System for Sandia National Laboratories’Z Facility

7. Performance Scaling in Magnetized Liner Inertial Fusion Experiments

9. Review of pulsed power-driven high energy density physics research on Z at Sandia

11. Novel beryllium-scintillator, neutron-fluence detector for magnetized liner inertial fusion experiments

12. Constraining preheat energy deposition in MagLIF experiments with multi-frame shadowgraphy

13. Enhancing performance of magnetized liner inertial fusion at the Z facility

14. Modeling the one-dimensional imager of neutrons (ODIN) for neutron response functions at the Sandia Z facility

15. Average neutron time-of-flight instrument response function inferred from single D-T neutron events within a plastic scintillator

17. Advances in Light Ion Beams for Inertial Confinement Fusion

18. Extreme-ultraviolet illumination effects on the PBFA-I magnetically insulated ion diode.

19. Fusion-neutron measurements for magnetized liner inertial fusion experiments on the Z accelerator

20. Publisher's Note: “Effects of magnetization on fusion product trapping and secondary neutron spectra” [Phys. Plasmas 22, 056312 (2015)]

21. Demonstration of thermonuclear conditions in magnetized liner inertial fusion experimentsa)

22. Effects of magnetization on fusion product trapping and secondary neutron spectraa)

23. Experimental progress in Magnetized Liner Inertial Fusion (MAGLIF)

24. Diagnosing magnetized liner inertial fusion experiments on Za)

25. Erratum: “Review of the National Ignition Campaign 2009-2012” [Phys. Plasmas 21, 020501 (2014)]

27. Understanding Fuel Magnetization and Mix Using Secondary Nuclear Reactions in Magneto-Inertial Fusion

28. Experimental Demonstration of Fusion-Relevant Conditions in Magnetized Liner Inertial Fusion

31. Experimental verification of the Magnetized Liner Inertial Fusion (MagLIF) concept

34. Nuclear imaging of the fuel assembly in ignition experiments

35. Magnetically Driven Implosions for Inertial Confinement Fusion at Sandia National Laboratories

38. Measuring the absolute deuterium–tritium neutron yield using the magnetic recoil spectrometer at OMEGA and the NIF

39. Neutron spectrometry—An essential tool for diagnosing implosions at the National Ignition Facility (invited)

40. Neutron activation diagnostics at the National Ignition Facility (invited)

41. Copper activation deuterium-tritium neutron yield measurements at the National Ignition Facility

42. On the absolute calibration of a DT fusion neutron yield diagnostic.

43. Absolute measurement of the DT primary neutron yield on the National Ignition Facility.

44. Measuring neutron yield and ρR anisotropies with activation foils at the National Ignition Facility.

46. Assembly of High-Areal-Density Deuterium-Tritium Fuel from Indirectly Driven Cryogenic Implosions

47. Upgrade of the MIT Linear Electrostatic Ion Accelerator (LEIA) for nuclear diagnostics development for Omega, Z and the NIF

48. Characterization and error analysis of anN×Nunfolding procedure applied to filtered, photoelectric x-ray detector arrays. II. Error analysis and generalization

49. Characterization and error analysis of anN×Nunfolding procedure applied to filtered, photoelectric x-ray detector arrays. I. Formulation and testing

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