Z-Pinch-Generated X Rays Demonstrate Potential for Indirect-Drive ICF Experiments
Sanford, T. W.; Olson, R. E.; Bowers, R. L. 1999-01-01
German National Library of Science and Technology (GetInfo) (German)
Sanford, T. W. L.; Olson, R. E.; Bowers, R. L. 1999-01-01
Z-Pinch Generated X-Rays in Static-Wall Hohlraum Geometry Demonstrate Potential for Indirect-Drive ICF Studies
Sandord, T. W. L.; Olson, R. E.; Chandler, G. A. 1999-01-01
Thermal Infrared Exposure of Cryogenic Indirect Drive ICF Targets
London, R. A.; Moody, J. D.; Sanchez, J. J. 2006-01-01
The science applications of the high‐energy density plasmas created on the Nova laser
Rosen, Mordecai D. 1996-01-01
The role of symmetry in indirect‐drive laser fusion
Watt, R.; Wilson, D.; Mack, J. 1995-01-01
The physics issues that determine inertial confinement fusion target gain and driver requirements: A tutorial
Rosen, Mordecai D. 1999-01-01
The first target experiments on the National Ignition Facility
Henesian, M. A.; Tuck, J.; Campbell, K. M. 2007-01-01
The US inertial confinement fusion (ICF) ignition programme and the inertial fusion energy (IFE) programme
J D Lindl; B A Hammel; B Grant Logan 2003-01-01
The Production of Hypersonic, Radiatively Cooled Plasma Projectiles of Extremely High Energy Density in Imploding Z‐pinches
Bland, S. N.; Dunne, A. M.; Lebedev, S. V. 2002-01-01
The National Ignition Facility and the National Ignition Campaign
Moses, E I 2010-01-01
Shock propagation, preheat, and x-ray burnthrough in indirect-drive inertial confinement fusion ablator materials
Cochrane, K.; Knauer, J. P.; Lash, K. 2004-01-01
Self‐consistent cutoff wave number of the ablative Rayleigh-Taylor instability
Goncharov, V. N.; Betti, R.; McCrory, R. L. 1995-01-01
Review of indirect-drive ignition design options for the National Ignition Facility
Cook, R. C.; Munro, D. H.; Haan, S. W. 1999-01-01
Recent advances in indirect drive ICF physics at CEA [4424-07]
Tassart, J.; Bonnaud, G.; Bourgade, J. L. 2001-01-01
Recent Advances in Indirect Drive ICF Target Physics
Lindl, J. D.; International Atomic Energy Agency 2005-01-01
Progress in symmetric ICF capsule implosions and wire-array z-pinch source physics for double-pinch-driven hohlraumsThis paper is based on an invited talk given by M K Matzen at the 32nd EPS Conference on Plasma Physics (Tarragona, Spain, 2005).
M E Cuneo; R A Vesey; G R Bennett 2006-01-01
Progress in direct-drive inertial confinement fusion
McCrory, R. L.; Meyerhofer, D. D.; Betti, R. 2008-01-01
Progress and prospects for indirect drive ICF
Lindl, J. D.; Department of Energy, Washington, DC 1992-01-01
Processing of multi-monochromatic x-ray images from indirect drive implosions at OMEGA
Mancini, R. C.; Klein, L.; Delettrez, J. 2003-01-01
Polarization beam smoothing for inertial confinement fusion
Rothenberg, Joshua E. 2000-01-01
Physics and prospects of inertial confinement fusion
M M Basko 1999-01-01
Modeling of Indirect-Drive ICF Implosions Using 1D Hydrodynamics Code with Inline Collisional-Radiative Atomic Kinetics
Golovkin, I. E.; American Nuclear Society 2004-01-01
Modal analysis of power imbalance and pointing errors for direct drive and tetrahedral hohlraums
S.M. Pollaine; D. Eimerl 2002-01-01
Measurements of laser-plasma instability relevant to ignition hohlraums
Watt, Robert G.; Kirkwood, R.; Bauer, Bruno S. 1997-01-01
Laser-plasma interactions in ignition‐scale hohlraum plasmas
Wilks, S. C.; Back, C. A.; Casanova, M. 1996-01-01
Laser compression and stability in inertial confinement fusion
R L McCrory; J M Soures; C P Verdon 2000-01-01
Inertial confinement fusion: steady progress towards ignition and high gain (summary talk)
M.M. Basko 2005-01-01
Inertial confinement fusion: The quest for ignition and energy gain using indirect drive
C. Yamanaka 1999-01-01
Inertial Fusion State of the Art---A Collection of Overview and Technical Papers from IFSA2003
W. J. Hogan 2004-01-01
Indirect-Drive Inertial Confinement Fusion (ICF) Ablator Characterization Experiments at the Omega Laser Facility
Olson, R. E.; Chandler, G. A.; Leeper, R. J. 2007-01-01
Indirect-Drive ICF Target Concepts for the X-1 Z-Pinch Facility
Olson, R. E.; Chandler, G. A.; Derzon, M. S. 1999-01-01
Indirect drive experiments utilizing multiple beam cones in cylindrical hohlraums on OMEGA
Kremens, R.; Craxton, R. S.; Magelssen, G. 1998-01-01
Indirect Drive ICF Using Highly Supersonic, Radiatively Cooled, Plasma Slugs
Chittenden, J. P.; Zepf, M.; Lebedev, S. V. 2001-01-01
Ignition on the National Ignition Facility: a path towards inertial fusion energy
Edward I. Moses 2009-01-01
Hohlraum X-ray deposition in indirect-drive ICF ablator materials
Olson, R. E.; Leeper, R. J.; Rochau, G. A. 2006-01-01
High performance capsule implosions driven by the Z-pinch dynamic hohlraum
G A Rochau; J E Bailey; G A Chandler 2007-01-01
High Temperatures in Inertial Confinement Fusion Radiation Cavities Heated with 0.35 μm Light
Kauffman, Robert L.; Suter, L. J.; Darrow, C. B. 1994-01-01
Full aperture backscatter station imager diagnostics system for far-field imaging of laser plasma instabilities on Nova
Looney, Larry D.; Berggren, Ralph R.; Montgomery, David S. 1997-01-01
Fast z-pinches as dense plasma, intense x-ray sources for plasma physics and fusion applications
M K Matzen; C Deeney; R J Leeper 1999-01-01
Fast Ignition by Intense Laser-Accelerated Proton Beams
Roth, M.; Cowan, T. E.; Key, M. H. 2001-01-01
Experimental testing of thin-shell stable acceleration for ICF schemes with direct and indirect drive
Bolotin, V. A.; Burdonsky, I. N.; Velikovich, A. L. 1993-01-01
Experimental determination of the hydrodynamic instability growth rates in indirect and direct drive ICF: Discussion
International Atomic Energy Agency 1992-01-01
Experimental determination of the hydrodynamic instability growth rates in indirect and direct drive ICF
Kilkenny, J. D.; International Atomic Energy Agency 1992-01-01
Kilkenny, J. D.; Munro, D. H.; Haan, S. W. 1992-01-01
Energy gain and performance of ablatively driven shell targets
A.R. Piriz; J.G. Wouchuk 2002-01-01
Edward Teller medal lecture: The evolution toward Indirect Drive and two decades of progress toward ICF ignition and burn
Lindl, J. D.; Department of Energy, Washington, DC 1993-01-01
Development of the indirect‐drive approach to inertial confinement fusion and the target physics basis for ignition and gain
Lindl, John 1995-01-01
Deposition and drive symmetry for light ion ICF targets
G.O. Allshouse; R.E. Olson; D.A. Callahan-Miller 2002-01-01
Advances in target design for heavy ion fusion
D A Callahan; M Tabak; G R Bennett 2005-01-01
Acceleration and deceleration model of indirect drive ICF capsules
Saillard, Y. 2006-01-01
Yves Saillard 2006-01-01
A review of the ablative stabilization of the Rayleigh-Taylor instability in regimes relevant to inertial confinement fusion
Glendinning, S. G.; Lindl, J. D.; Kilkenny, J. D. 1994-01-01