First results from the analysis of neutron image data collected on implosions of cryogenically layered deuterium-tritium capsules during the 2011-2012 National Ignition Campaign are reported. The data span a variety of experimental designs aimed at increasing the stagnation pressure of the central hotspot and areal density of the surrounding fuel assembly. Images of neutrons produced by deuterium-tritium fusion reactions in the hotspot are presented, as well as images of neutrons that scatter in the surrounding dense fuel assembly. The image data are compared with 1D and 2D model predictions, and consistency checked using other diagnostic data. The results indicate that the size of the fusing hotspot is consistent with the model predictions...
The National Ignition Facility has been used to compress deuterium-tritium to an average areal densi...
In this paper, we report demonstration of emitted-neutron computed tomography using fast fission neu...
Direct-drive implosion experiments on the GEKKO XII laser (9 kJ, 0.5 μm, 2 ns) with deuterium and tr...
Abstract. Inertial Confinement Fusion experiments at the National Ignition Facility (NIF) are design...
Non-burning thermonuclear fuel implosion experiments have been fielded on the National Ignition Faci...
Understanding of the thermonuclear burn in an inertial confinement fusion implosion requires knowled...
A summary of data and results from the first neutron images produced by the National Ignition Facili...
A summary of data and results from the first neutron images produced by the National Ignition Facili...
Neutron imaging systems measure the spatial distribution of neutron emission from burning inertial c...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
An accurate understanding of burn dynamics in implosions of cryogenically layered deuterium and trit...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.In direct-drive ...
The first inertial confinement fusion implosion experiments with equimolar deuterium-tritium thermon...
The National Ignition Facility has been used to compress deuterium-tritium to an average areal densi...
In this paper, we report demonstration of emitted-neutron computed tomography using fast fission neu...
Direct-drive implosion experiments on the GEKKO XII laser (9 kJ, 0.5 μm, 2 ns) with deuterium and tr...
Abstract. Inertial Confinement Fusion experiments at the National Ignition Facility (NIF) are design...
Non-burning thermonuclear fuel implosion experiments have been fielded on the National Ignition Faci...
Understanding of the thermonuclear burn in an inertial confinement fusion implosion requires knowled...
A summary of data and results from the first neutron images produced by the National Ignition Facili...
A summary of data and results from the first neutron images produced by the National Ignition Facili...
Neutron imaging systems measure the spatial distribution of neutron emission from burning inertial c...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
Directly laser driven and X-radiation driven DT filled capsules differ in the relationship between n...
An accurate understanding of burn dynamics in implosions of cryogenically layered deuterium and trit...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.In direct-drive ...
The first inertial confinement fusion implosion experiments with equimolar deuterium-tritium thermon...
The National Ignition Facility has been used to compress deuterium-tritium to an average areal densi...
In this paper, we report demonstration of emitted-neutron computed tomography using fast fission neu...
Direct-drive implosion experiments on the GEKKO XII laser (9 kJ, 0.5 μm, 2 ns) with deuterium and tr...