145 results on '"Kilkenny, J."'
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2. Neutron time of flight (nToF) detectors for inertial fusion experiments
3. A 2–4 keV multilayer mirrored channel for the NIF Dante system
4. Design of the high-yield time-gated x-ray hot-spot imager for OMEGA
5. Constraining time-dependent ion temperature measurements in inertial confinement fusion (ICF) implosions with an intermediate distance neutron time-of-flight (nToF) detector
6. Design of a multi-detector, single line-of-sight, time-of-flight system to measure time-resolved neutron energy spectra
7. Phased plan for the implementation of the time-resolving magnetic recoil spectrometer on the National Ignition Facility (NIF)
8. Performance of a hardened x-ray streak camera at Lawrence Livermore National Laboratory’s National Ignition Facility
9. Design of the ion-optics for the MRSt neutron spectrometer at the National Ignition Facility (NIF)
10. Top-level physics requirements and simulated performance of the MRSt on the National Ignition Facility
11. The five line-of-sight neutron time-of-flight (nToF) suite on the National Ignition Facility (NIF)
12. Response of a lead-free borosilicate-glass microchannel plate to 14-MeV neutrons and γ-rays
13. Kinetic effects on neutron generation in moderately collisional interpenetrating plasma flows
14. The Crystal Backlighter Imager: A spherically bent crystal imager for radiography on the National Ignition Facility
15. Implementation of the foil-on-hohlraum technique for the magnetic recoil spectrometer for time-resolved neutron measurements at the National Ignition Facility
16. Progress on next generation gamma-ray Cherenkov detectors for the National Ignition Facility
17. Absolute calibration of a time-resolved high resolution x-ray spectrometer for the National Ignition Facility (invited)
18. Development of an ultra-fast photomultiplier tube for gamma-ray Cherenkov detectors at the National Ignition Facility (PD-PMT)
19. The single-line-of-sight, time-resolved x-ray imager diagnostic on OMEGA
20. Pulse dilation gas Cherenkov detector for ultra-fast gamma reaction history at the NIF (invited)
21. Sub-nanosecond single line-of-sight (SLOS) x-ray imagers (invited)
22. Implementing time resolved electron temperature capability at the NIF using a streak camera
23. Characterisation of a sub-20 ps temporal resolution pulse dilation photomultiplier tube
24. Optimization of a high-yield, low-areal-density fusion product source at the National Ignition Facility with applications in nucleosynthesis experiments
25. The role of hot spot mix in the low-foot and high-foot implosions on the NIF
26. Impact of temperature-velocity distribution on fusion neutron peak shape
27. Development of an inertial confinement fusion platform to study charged-particle-producing nuclear reactions relevant to nuclear astrophysics
28. Initial experimental demonstration of the principles of a xenon gas shield designed to protect optical components from soft x-ray induced opacity (blanking) in high energy density experiments
29. Next generation gamma-ray Cherenkov detectors for the National Ignition Facility
30. Development of a high resolution x-ray spectrometer for the National Ignition Facility (NIF)
31. The design of the optical Thomson scattering diagnostic for the National Ignition Facility
32. A high-speed two-frame, 1-2 ns gated X-ray CMOS imager used as a hohlraum diagnostic on the National Ignition Facility (invited)
33. The National Ignition Facility modular Kirkpatrick-Baez microscope
34. High-resolution measurements of the DT neutron spectrum using new CD foils in the Magnetic Recoil neutron Spectrometer (MRS) on the National Ignition Facility
35. Improving the off-axis spatial resolution and dynamic range of the NIF X-ray streak cameras (invited)
36. Signal and background considerations for the MRSt on the National Ignition Facility (NIF)
37. The magnetic recoil spectrometer (MRSt) for time-resolved measurements of the neutron spectrum at the National Ignition Facility (NIF)
38. Simulated performance of the optical Thomson scattering diagnostic designed for the National Ignition Facility
39. Spatially resolved X-ray emission measurements of the residual velocity during the stagnation phase of inertial confinement fusion implosion experiments
40. The near vacuum hohlraum campaign at the NIF: A new approach
41. Effects of fuel-capsule shimming and drive asymmetry on inertial-confinement-fusion symmetry and yield
42. The size and structure of the laser entrance hole in gas-filled hohlraums at the National Ignition Facility
43. Using multiple secondary fusion products to evaluate fuel ρR, electron temperature, and mix in deuterium-filled implosions at the NIF
44. Cryogenic tritium-hydrogen-deuterium and deuterium-tritium layer implosions with high density carbon ablators in near-vacuum hohlraums
45. Polar-direct-drive experiments on the National Ignition Facilitya)
46. In-flight observations of low-mode ρR asymmetries in NIF implosions
47. Investigation of ion kinetic effects in direct-drive exploding-pusher implosions at the NIF
48. Erratum: “Review of the National Ignition Campaign 2009-2012” [Phys. Plasmas 21, 020501 (2014)]
49. A Kirkpatrick-Baez microscope for the National Ignition Facility
50. A magnetic particle time-of-flight (MagPTOF) diagnostic for measurements of shock- and compression-bang time at the NIF (invited)
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