Nuclear Data Sheets, ISSN 0090-3752, 02/2018, Volume 148, Issue C, pp. 1 - 142
We describe the new ENDF/B-VIII.0 evaluated nuclear reaction data library. ENDF/B-VIII.0 fully incorporates the new IAEA standards, includes improved thermal...
PROTON ANALYZING POWER | ANGULAR-DISTRIBUTION | RESONANCE PARAMETERS | GAMMA-RAY-PRODUCTION | ELASTIC-SCATTERING | PHYSICS, NUCLEAR | TOTAL-ENERGY CALCULATIONS | INELASTIC-SCATTERING | N-P SCATTERING | SURFACE PHONON-DISPERSION | FISSION NEUTRON-SPECTRUM | NUCLEAR PHYSICS AND RADIATION PHYSICS
PROTON ANALYZING POWER | ANGULAR-DISTRIBUTION | RESONANCE PARAMETERS | GAMMA-RAY-PRODUCTION | ELASTIC-SCATTERING | PHYSICS, NUCLEAR | TOTAL-ENERGY CALCULATIONS | INELASTIC-SCATTERING | N-P SCATTERING | SURFACE PHONON-DISPERSION | FISSION NEUTRON-SPECTRUM | NUCLEAR PHYSICS AND RADIATION PHYSICS
Journal Article
Review of Scientific Instruments, ISSN 0034-6748, 09/2014, Volume 85, Issue 9, p. 093501
A very large area (7.5 mm(2)) laser-driven x-ray backlighter, termed the Big Area BackLighter (BABL) has been developed for the National Ignition Facility...
INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | RADIOGRAPHY | RESOLUTION | TARGETS | PLASMAS | NATIONAL-IGNITION-FACILITY | Pinholes | Flux density | Lasers | Energy transmission | Light | Foils | Diagnostic systems | Field of view | X ray spectra | Background radiation | Substrates | Image contrast
INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | RADIOGRAPHY | RESOLUTION | TARGETS | PLASMAS | NATIONAL-IGNITION-FACILITY | Pinholes | Flux density | Lasers | Energy transmission | Light | Foils | Diagnostic systems | Field of view | X ray spectra | Background radiation | Substrates | Image contrast
Journal Article
Physics of Plasmas, ISSN 1070-664X, 05/2015, Volume 22, Issue 5
An indirectly-driven shock tube experiment fielded on the National Ignition Facility (NIF) was used to create a high-energy-density hydrodynamics platform at...
RAYLEIGH-TAYLOR INSTABILITY | SIMULATION | PHYSICS, FLUIDS & PLASMAS | shock tubes | shock wave effects | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | radiography | experiment design | Hohlraum
RAYLEIGH-TAYLOR INSTABILITY | SIMULATION | PHYSICS, FLUIDS & PLASMAS | shock tubes | shock wave effects | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | radiography | experiment design | Hohlraum
Journal Article
Physics of Plasmas, ISSN 1070-664X, 05/2015, Volume 22, Issue 5
An indirectly-driven shock tube experiment fielded on the National Ignition Facility (NIF) was used to create a high-energy-density hydrodynamics platform at...
FOAMS | PLASMA INSTABILITY | SHOCK TUBES | OMEGA FACILITY | LENGTH | HYDRODYNAMICS | US NATIONAL IGNITION FACILITY | COMPARATIVE EVALUATIONS | ENERGY DENSITY | PULSE SHAPERS | COMPUTERIZED SIMULATION | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | SCALING | EXPERIMENTAL DATA
FOAMS | PLASMA INSTABILITY | SHOCK TUBES | OMEGA FACILITY | LENGTH | HYDRODYNAMICS | US NATIONAL IGNITION FACILITY | COMPARATIVE EVALUATIONS | ENERGY DENSITY | PULSE SHAPERS | COMPUTERIZED SIMULATION | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | SCALING | EXPERIMENTAL DATA
Journal Article
Physics of Plasmas, ISSN 1070-664X, 12/2013, Volume 20, Issue 12, p. 122704
The counterpropagating shear experiment has previously demonstrated the ability to create regions of shock-driven shear, balanced symmetrically in pressure,...
PHYSICS, FLUIDS & PLASMAS | Supersonic flow | Turbulence | Turbulent flow | Computational fluid dynamics | Energy dissipation | Shear flow | Density | Reynolds averaged Navier-Stokes method | Mach number | CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
PHYSICS, FLUIDS & PLASMAS | Supersonic flow | Turbulence | Turbulent flow | Computational fluid dynamics | Energy dissipation | Shear flow | Density | Reynolds averaged Navier-Stokes method | Mach number | CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
Journal Article
Physics of Plasmas, ISSN 1070-664X, 05/2015, Volume 22, Issue 5
An indirectly-driven shock tube experiment fielded on the National Ignition Facility (NIF) was used to create a high-energy-density hydrodynamics platform at...
Fluid mechanics | Shear | Stability | Fluid dynamics | Edge effect | Ignition | Fluid flow | Hydrodynamics | Diagnostic systems | Experiments
Fluid mechanics | Shear | Stability | Fluid dynamics | Edge effect | Ignition | Fluid flow | Hydrodynamics | Diagnostic systems | Experiments
Journal Article
Physics of Plasmas, ISSN 1070-664X, 05/2015, Volume 22, Issue 5, p. 56303
Journal Article
Physics of Plasmas, ISSN 1070-664X, 12/2013, Volume 20, Issue 12
The counterpropagating shear experiment has previously demonstrated the ability to create regions of shock-driven shear, balanced symmetrically in pressure,...
PLASMA SIMULATION | ENERGY DENSITY | SHOCK WAVES | MACH NUMBER | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PLASMA | REYNOLDS NUMBER | SUPERSONIC FLOW | PLASMA HEATING | PLASMA EXPANSION | TURBULENCE
PLASMA SIMULATION | ENERGY DENSITY | SHOCK WAVES | MACH NUMBER | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PLASMA | REYNOLDS NUMBER | SUPERSONIC FLOW | PLASMA HEATING | PLASMA EXPANSION | TURBULENCE
Journal Article
High Energy Density Physics, ISSN 1574-1818, 09/2013, Volume 9, Issue 3, pp. 496 - 499
In an effort to better understand mix in Inertial Confinement Fusion (ICF) implosion cores, a series of laser-driven mix experiments has been designed for the...
Turbulence | High energy density experiments | Mix | Inertial Confinement Fusion | PHYSICS, FLUIDS & PLASMAS | Laser-plasma interactions
Turbulence | High energy density experiments | Mix | Inertial Confinement Fusion | PHYSICS, FLUIDS & PLASMAS | Laser-plasma interactions
Journal Article
Physics of Plasmas, ISSN 1070-664X, 02/2013, Volume 20, Issue 2, p. 22309
We perform simulations of a laser-driven reshock experiment [Welser-Sherrill et al., High Energy Density Phys. (unpublished)] in the strong-shock high...
TRANSITION | MODEL | PHYSICS, FLUIDS & PLASMAS | RAYLEIGH-TAYLOR | TURBULENT FLOWS | RICHTMYER-MESHKOV INSTABILITIES | Turbulence | Turbulent flow | Computational fluid dynamics | Computer simulation | Vorticity | Fluid flow | Isotropic turbulence | Navier-Stokes equations | PLASMA INSTABILITY | DISTRIBUTION | PLASMA SIMULATION | ISOTROPY | CHARGES | LIGHT TRANSMISSION | CORRELATIONS | COMPARATIVE EVALUATIONS | ENERGY DENSITY | SHOCK WAVES | COMPUTERIZED SIMULATION | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PLASMA | PROBABILITY DENSITY FUNCTIONS | MIXING | REYNOLDS NUMBER | KINETIC ENERGY | TURBULENCE | PLASMA DIAGNOSTICS
TRANSITION | MODEL | PHYSICS, FLUIDS & PLASMAS | RAYLEIGH-TAYLOR | TURBULENT FLOWS | RICHTMYER-MESHKOV INSTABILITIES | Turbulence | Turbulent flow | Computational fluid dynamics | Computer simulation | Vorticity | Fluid flow | Isotropic turbulence | Navier-Stokes equations | PLASMA INSTABILITY | DISTRIBUTION | PLASMA SIMULATION | ISOTROPY | CHARGES | LIGHT TRANSMISSION | CORRELATIONS | COMPARATIVE EVALUATIONS | ENERGY DENSITY | SHOCK WAVES | COMPUTERIZED SIMULATION | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PLASMA | PROBABILITY DENSITY FUNCTIONS | MIXING | REYNOLDS NUMBER | KINETIC ENERGY | TURBULENCE | PLASMA DIAGNOSTICS
Journal Article
High Energy Density Physics, ISSN 1574-1818, 11/2019, Volume 33, p. 100705
Imperfections at the interface between the ablator and fuel in an ICF capsule can give rise the Richtmyer-Meshkov instability (RMI). The effects of multiple...
Journal Article
Physics of Plasmas, ISSN 1070-664X, 01/2013, Volume 20, Issue 1, p. 12707
In a turbulence experiment conducted at the Omega Laser Facility [Boehly et al., Opt. Commun. 133, 495 (1997)]], regions of 60 mg/cc foam are separated by an...
COMPRESSIBILITY | PHYSICS, FLUIDS & PLASMAS | LAYERS | ALUMINIUM | LASER RADIATION | SHOCK TUBES | INSTABILITY | SIMULATION | SHOCK WAVES | STRIATIONS | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | MIXING | REYNOLDS NUMBER | FLOW VISUALIZATION | INTERFACES | X-RAY RADIOGRAPHY | TURBULENCE | PRESSURE GRADIENTS
COMPRESSIBILITY | PHYSICS, FLUIDS & PLASMAS | LAYERS | ALUMINIUM | LASER RADIATION | SHOCK TUBES | INSTABILITY | SIMULATION | SHOCK WAVES | STRIATIONS | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | MIXING | REYNOLDS NUMBER | FLOW VISUALIZATION | INTERFACES | X-RAY RADIOGRAPHY | TURBULENCE | PRESSURE GRADIENTS
Journal Article
Journal of Physics: Conference Series, ISSN 1742-6588, 04/2016, Volume 688, Issue 1, p. 12018
Conference Proceeding
Physics of Plasmas, ISSN 1070-664X, 07/2013, Volume 20, Issue 7, p. 72306
We perform simulations of laser-driven turbulence experiments with energy deposition, modeling situations where energy is deposited in a mixing layer before or...
PHYSICS, FLUIDS & PLASMAS | TURBULENT FLOW | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | PLASMA SIMULATION | CAPSULES | LASER-PRODUCED PLASMA | INERTIAL CONFINEMENT | TURBULENCE | ENERGY ABSORPTION | SHOCK WAVES | ENERGY LOSSES | LAYERS
PHYSICS, FLUIDS & PLASMAS | TURBULENT FLOW | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | PLASMA SIMULATION | CAPSULES | LASER-PRODUCED PLASMA | INERTIAL CONFINEMENT | TURBULENCE | ENERGY ABSORPTION | SHOCK WAVES | ENERGY LOSSES | LAYERS
Journal Article
Nuclear Data Sheets, ISSN 0090-3752, 02/2018, Volume 148, pp. 1 - 142
Journal Article
Physics of Plasmas, ISSN 1070-664X, 09/2013, Volume 20, Issue 9, p. 92301
We perform an ensemble of simulations of a laser-driven shear experiment [L. Welser-Sherrill et al., "Two laser-driven mix experiments to study reshock and...
TRANSITION | PHYSICS, FLUIDS & PLASMAS | TURBULENT FLOWS | VORTEX | TAYLOR | Turbulent flow | Shear | Direct numerical simulation | Computational fluid dynamics | Computer simulation | Probability density functions | Turbulent mixing | Reynolds averaged Navier-Stokes method | Simulation | Flux density | Interface stability | Lasers | Isotropic turbulence | Mathematical models | LASERS | HELMHOLTZ INSTABILITY | ENERGY DENSITY | SHOCK WAVES | COMPUTERIZED SIMULATION | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PROBABILITY DENSITY FUNCTIONS | MIXING | REYNOLDS NUMBER | PERTURBATION THEORY | TURBULENCE
TRANSITION | PHYSICS, FLUIDS & PLASMAS | TURBULENT FLOWS | VORTEX | TAYLOR | Turbulent flow | Shear | Direct numerical simulation | Computational fluid dynamics | Computer simulation | Probability density functions | Turbulent mixing | Reynolds averaged Navier-Stokes method | Simulation | Flux density | Interface stability | Lasers | Isotropic turbulence | Mathematical models | LASERS | HELMHOLTZ INSTABILITY | ENERGY DENSITY | SHOCK WAVES | COMPUTERIZED SIMULATION | SHEAR | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | NAVIER-STOKES EQUATIONS | PROBABILITY DENSITY FUNCTIONS | MIXING | REYNOLDS NUMBER | PERTURBATION THEORY | TURBULENCE
Journal Article
Review of Scientific Instruments, ISSN 0034-6748, 10/2008, Volume 79, Issue 10, pp. 10E921 - 10E921-4
Detailed analysis of x-ray narrow-band images from argon-doped deuterium-filled inertial confinement fusion implosion experiments yields information about the...
laser fusion | INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | SHELL | plasma diagnostics | genetic algorithms | explosions | PLASMAS | GRADIENTS | plasma temperature | X-RAY SPECTROSCOPY | INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY | X RADIATION | LASERS | ELECTRON TEMPERATURE | INERTIAL CONFINEMENT | ALGORITHMS | EMISSIVITY | COMPARATIVE EVALUATIONS | DEUTERIUM | IMPLOSIONS | ARGON | IMAGES | DOPED MATERIALS | PLASMA DIAGNOSTICS | ION TEMPERATURE
laser fusion | INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | SHELL | plasma diagnostics | genetic algorithms | explosions | PLASMAS | GRADIENTS | plasma temperature | X-RAY SPECTROSCOPY | INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY | X RADIATION | LASERS | ELECTRON TEMPERATURE | INERTIAL CONFINEMENT | ALGORITHMS | EMISSIVITY | COMPARATIVE EVALUATIONS | DEUTERIUM | IMPLOSIONS | ARGON | IMAGES | DOPED MATERIALS | PLASMA DIAGNOSTICS | ION TEMPERATURE
Journal Article
High Energy Density Physics, ISSN 1574-1818, 2011, Volume 7, Issue 4, pp. 327 - 335
In inertial confinement fusion double-shell designs, the inner shell experiences heating that can amplify non-uniformities and consequently enhance mixing,...
Mix | Inertial confinement fusion | Radiation transport | PHYSICS, FLUIDS & PLASMAS | Fluid dynamics | Analysis | Phosphonates
Mix | Inertial confinement fusion | Radiation transport | PHYSICS, FLUIDS & PLASMAS | Fluid dynamics | Analysis | Phosphonates
Journal Article
Computer Physics Communications, ISSN 0010-4655, 2009, Volume 180, Issue 6, pp. 835 - 841
Graphical user interface tools have been built in IDL to study mix in inertial confinement fusion (ICF) implosion cores. FLAME, a code which investigates yield...
Mix models | Inertial confinement fusion | Fall-line | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | IGNITION | PHYSICS, MATHEMATICAL | Laser-plasma interactions
Mix models | Inertial confinement fusion | Fall-line | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | IGNITION | PHYSICS, MATHEMATICAL | Laser-plasma interactions
Journal Article
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, ISSN 1539-3755, 11/2007, Volume 76, Issue 5, p. 056403
In the field of inertial confinement fusion (ICF), work has been consistently progressing in the past decade toward a more fundamental understanding of the...
PHYSICS, FLUIDS & PLASMAS | BETA LINE | OPACITY | SATELLITES | PLASMAS | OMEGA | PHYSICS, MATHEMATICAL | GRADIENTS | INERTIAL CONFINEMENT FUSION
PHYSICS, FLUIDS & PLASMAS | BETA LINE | OPACITY | SATELLITES | PLASMAS | OMEGA | PHYSICS, MATHEMATICAL | GRADIENTS | INERTIAL CONFINEMENT FUSION
Journal Article