The evolution of high-energy-density physics: From nuclear testing to the superlasers
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Bruce A. Remington | Edward Teller | E. Michael Campbell | Neil C. Holmes | E. Teller | B. Remington | N. Holmes | E. Campbell | S. Libby | Steven B. Libby
[1] J. E. Tabor,et al. Radiative otacity tables for 40 stellar mixtures , 1976 .
[2] Pukhov,et al. Relativistic magnetic self-channeling of light in near-critical plasma: Three-dimensional particle-in-cell simulation. , 1996, Physical review letters.
[3] W. Nellis,et al. Equation‐of‐state, shock‐temperature, and electrical‐conductivity data of dense fluid nitrogen in the region of the dissociative phase transition , 1991 .
[4] B. Henry. Spectral line limiting and polarization shift in plasmas of high particle and energy density , 1983 .
[5] Goldstein,et al. Super-transition-arrays: A model for the spectral analysis of hot, dense plasma. , 1989, Physical review. A, General physics.
[6] Town,et al. Three-dimensional simulations of the implosion of inertial confinement fusion targets. , 1991, Physical review letters.
[7] Dimonte,et al. Richtmyer-Meshkov instability in the turbulent regime. , 1995, Physical review letters.
[8] Robert A. Meyers,et al. Encyclopedia of physical science and technology , 1987 .
[9] R. London,et al. Supernova hydrodynamics experiments on the Nova laser , 1997 .
[10] W. Huebner,et al. Is the metal contribution to the astrophysical opacity incorrect , 1984 .
[11] G. Mourou,et al. Terawatt to Petawatt Subpicosecond Lasers , 1994, Science.
[12] Perry,et al. Nonlinear ponderomotive scattering of relativistic electrons by an intense laser field at focus. , 1995, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[13] D. Henderson,et al. Ablation stability of laser-driven implosions , 1974 .
[14] B. Wilson,et al. Insights on the plasma polarization shift: A comparison of local density approximation and optimum potential methods , 1995 .
[15] John Lindl,et al. Two-dimensional simulation of fluid instability in laser-fusion pellets , 1975 .
[16] Justin S. Wark,et al. Novel measurements of high‐dynamic crystal strength by picosecond x‐ray diffraction , 1992 .
[17] L. V. Al’tshuler. Reviews of Topical Problems: Use of Shock Waves in High-Pressure Physics , 1965 .
[18] B. Sturtevant,et al. X‐ray measurements of growth rates at a gas interface accelerated by shock waves , 1996 .
[19] Steven A. Orszag,et al. Three-dimensional simulations and analysis of the nonlinear stage of the Rayleigh-Taylor instability , 1995 .
[20] Cauble,et al. Micron-resolution radiography of laser-accelerated and X-ray heated foils with an X-ray laser. , 1995, Physical review letters.
[21] Bradford Sturtevant,et al. Experiments on the Richtmyer-Meshkov instability of an air/SF6 interface , 1995 .
[22] M. Marley,et al. Thermodynamics of dense molecular hydrogen-helium mixtures at high pressure , 1988 .
[23] M. Meyers. Dynamic Behavior of Materials , 1994 .
[24] N. Woolsey,et al. Direct measurements of compressive and tensile strain during shock breakout by use of subnanosecond x‐ray diffraction , 1990 .
[25] Remington,et al. Richtmyer-Meshkov experiments on the Nova laser at high compression. , 1993, Physical review letters.
[26] B. Sturtevant,et al. Experiments on the Richtmyer–Meshkov instability: single-scale perturbations on a continuous interface , 1994, Journal of Fluid Mechanics.
[27] Scott C. Wilks. Simulations of ultraintense laser-plasma interactions , 1993 .
[28] R. Sigel,et al. Lasers in High Pressure Shock Wave Research , 1993 .
[29] Henri Pepin,et al. Importance of two-dimensional effects for the generation of ultra high pressures obtained in laser colliding foil experiments , 1990 .
[30] J. Blondin,et al. Hydrodynamic Instabilities in Supernova Remnants: Early Radiative Cooling , 1995 .
[31] R. Klein,et al. On the hydrodynamic interaction of shock waves with interstellar clouds. 1: Nonradiative shocks in small clouds , 1994 .
[32] Gilbert W. Collins,et al. Absolute measurements of the equations of state of low-Z materials in the multi-Mbar regime using laser-driven shocks , 1997 .
[33] J. K. Wolford,et al. Theory of the aluminum shock equation of state to 104 Mbar , 1985 .
[34] K. Brueckner,et al. Hydrodynamic stability of a laser‐driven plasma , 1974 .
[35] B. Fryxell,et al. Instability and clumping in SN 1987A , 1991 .
[36] W. Nellis,et al. Silica at ultrahigh temperature and expanded volume , 1984 .
[37] Nishihara,et al. Three-dimensional Rayleigh-Taylor instability of spherical systems. , 1990, Physical review letters.
[38] K. Nomoto,et al. X-ray emission from the collision of the ejecta with the ring nebula around SN 1987A , 1993 .
[39] Weber,et al. Three-dimensional single mode Rayleigh-Taylor experiments on nova. , 1995, Physical review letters.
[40] Burke,et al. Measurement of radiation-driven shock-induced mixing from nonlinear initial perturbations. , 1995, Physical review letters.
[41] Orthogonal strains and onset of plasticity in shocked LiF crystals. , 1995, Physical review. B, Condensed matter.
[42] J. A. Paisner,et al. The National Ignition Facility Project , 1994 .
[43] F. Rogers,et al. Observation on radiation transfer experiments using k-shell absorption spectra , 1995 .
[44] V. V. Kostin,et al. Spallation of metals under laser irradiation , 1991 .
[45] W. Holzapfel,et al. High-pressure Science and Technology , 1965, Nature.
[46] S. M. Chitre,et al. The Current State of Solar Modeling , 1996, Science.
[47] W. Nellis,et al. Temperature measurements of shock-compressed liquid hydrogen: implications for the interior of Jupiter , 1995, Science.
[48] E. Campbell. Recent results from the Nova program at LLNL , 1991 .
[49] W. Arnett,et al. Simulations of supernova-relevant hydrodynamic instability experiments on the Nova laser , 1997 .
[50] Stephen E. Bodner,et al. Rayleigh-Taylor Instability and Laser-Pellet Fusion , 1974 .
[51] J. Jacobs,et al. Experimental study of incompressible Richtmyer–Meshkov instability , 1996 .
[52] D. Youngs,et al. Numerical simulation of turbulent mixing by Rayleigh-Taylor instability , 1984 .
[53] Supernova-relevant Hydrodynamic Instability Experiments on the Nova Laser , 1997 .
[54] Colin J. Horsfield,et al. Hugoniot EOS measurements at Mbar pressures , 1996 .
[55] Nakai,et al. Uniform multimegabar shock waves in solids driven by laser-generated thermal radiation. , 1994, Physical review letters.
[56] Dimonte,et al. Nonlinear perturbation theory of the incompressible Richtmyer-Meshkov instability. , 1996, Physical review letters.
[57] R. McCray,et al. The circumstellar shell of SN 1987A , 1991 .
[58] Ross,et al. Molecular dissociation and shock-induced cooling in fluid nitrogen at high densities and temperatures. , 1986, Physical review letters.
[59] Allen C. Robinson,et al. Acceleration instability in elastic‐plastic solids. I. Numerical simulations of plate acceleration , 1989 .
[60] Alwyn Mackay. The making of the atomic age , 1984 .
[61] J. N. Fritz,et al. Shock loading a rippled interface between liquids of different densities , 1987 .
[62] Jonathan Weisman. Defense Research: New Mission for the National Labs , 1995, Science.
[63] W. Hubbard,et al. Statistical mechanics of light elements at high pressure. VII: A perturbative free energy for arbitrary mixtures of H and He , 1985 .
[64] J. Kilkenny,et al. EXPERIMENTAL TECHNIQUES TO MEASURE THERMAL RADIATION HEAT TRANSFER , 1994 .
[65] R. Latter,et al. Electron Radiative Transitions in a Coulomb Field , 1961 .
[66] Weber,et al. Electron Density Measurements of High Density Plasmas Using Soft X-Ray Laser Interferometry. , 1995, Physical review letters.
[67] Remington,et al. Experimental comparison of classical versus ablative Rayleigh-Taylor instability. , 1996, Physical review letters.
[68] V. A. Simonenko,et al. REVIEWS OF TOPICAL PROBLEMS: Intense shock waves and extreme states of matter , 1993 .
[69] D. R. Inglis,et al. Ionic Depression of Series Limits in One-Electron Spectra. , 1939 .
[70] Hans A. Bethe,et al. Bombs After Hiroshima , 1995, Science.
[71] F. Rogers. Equation of state of dense, partially degenerate, reacting plasmas , 1981 .
[72] Gilbert W. Collins,et al. Absolute equation of state measurements of shocked liquid deuterium up to 200 GPa (2 Mbar) , 1997 .
[73] M. Ross,et al. HIGH PRESSURE EQUATIONS OF STATE: THEORY AND APPLICATIONS , 1993 .
[74] R. J. Collier,et al. Principles of Solid State Physics , 1968 .
[75] R. McCray,et al. X-Rays from the Impact of SN 1987A with its Circumstellar Ring , 1994 .
[76] G. Mourou,et al. Nonlinear Optics in Relativistic Plasmas and Laser Wake Field Acceleration of Electrons , 1996, Science.
[77] B. C. Diven,et al. Shock compression of molybdenum to 2.0 TPa by means of a nuclear explosion , 1977 .
[78] B. Remington,et al. Richtmyer-Meshkov instability with strong radiatively driven shocks , 1996 .
[79] M. Ross. The dissociation of dense liquid nitrogen , 1987 .
[80] Saumon,et al. Fluid hydrogen at high density: Pressure dissociation. , 1991, Physical review. A, Atomic, molecular, and optical physics.
[81] S. Fu,et al. Laser‐driven shock stability in Al and shock compressibilities of Fe up to 0.8 TPa and SiO2 up to 0.4 TPa , 1995 .
[82] O. Landen,et al. X-ray backlit imaging measurement of in-flight pusher density for an indirect drive capsule implosion , 1996 .
[83] J. Kilkenny,et al. X‐ray radiographic imaging of hydrodynamic phenomena in radiation‐driven materials—Shock propagation, material compression, and shear flow* , 1994 .
[84] Gretar Tryggvason,et al. Computations of three‐dimensional Rayleigh–Taylor instability , 1990 .
[85] Bossi,et al. Relative consistency of equations of state by laser driven shock waves. , 1995, Physical review letters.
[86] T. S. Perry,et al. X‐ray radiographic measurements of radiation‐driven shock and interface motion in solid density material , 1993 .
[87] M. G. Mayer. Rare-Earth and Transuranic Elements , 1941 .
[88] J. Lindl. Development of the indirect‐drive approach to inertial confinement fusion and the target physics basis for ignition and gain , 1995 .
[89] K. I. Read,et al. Experimental investigation of turbulent mixing by Rayleigh-Taylor instability , 1984 .
[90] Allen C. Robinson,et al. Acceleration instability in elastic-plastic solids. II: Analytical techniques , 1989 .
[91] Troy W. Barbee,et al. Electron density measurement of a colliding plasma using soft-x-ray laser interferometry , 1997 .
[92] D. Stevenson. Miscibility gaps in fully pressure-ionized binary alloys , 1976 .
[93] Stewart,et al. Spectroscopic absorption measurements of an iron plasma. , 1992, Physical review letters.
[94] Justin S. Wark,et al. Modeling of time resolved x-ray diffraction from laser-shocked crystals , 1997 .
[95] Kenneth A. Meyer,et al. Taylor instability in solids , 1974 .
[96] Rogers,et al. Absorption measurements demonstrating the importance of Delta n=0 transitions in the opacity of iron. , 1992, Physical review letters.
[97] J. Nuckolls,et al. Laser Compression of Matter to Super-High Densities: Thermonuclear (CTR) Applications , 1972, Nature.
[98] William L. Barr,et al. Spectral Line Broadening by Plasmas , 1975, IEEE Transactions on Plasma Science.
[99] A. R. Susoeff,et al. A linear electric motor to study turbulent hydrodynamics , 1996 .
[100] G. Doolen,et al. The effect of shape in the three-dimensional ablative Rayleigh-Taylor instability. I: Single-mode perturbations , 1993 .
[101] D. Liberman. Inferno: A better model of atoms in dense plasmas , 1982 .
[102] John D. M. Edwards,et al. Rayleigh–Taylor instability evolution in ablatively driven cylindrical implosions , 1996 .
[103] W. Nellis,et al. Equation of state of Al, Cu, Mo, and Pb at shock pressures up to 2.4 TPa (24 Mbar) , 1991 .
[104] W. J. Nellis,et al. Metallization of fluid molecular hydrogen at 140 GPa (1.4 Mbar) , 1996 .
[105] R. Trunin,et al. Shock compressibility of condensed materials in strong shock waves generated by underground nuclear explosions , 1994 .
[106] D. Stevenson. Thermodynamics and phase separation of dense fully ionized hydrogen-helium fluid mixtures , 1975 .
[107] Swain,et al. Subnanosecond x-ray diffraction from laser-shocked crystals. , 1989, Physical review. B, Condensed matter.
[108] Ivan Catton,et al. Three-dimensional Rayleigh-Taylor instability Part 2. Experiment , 1988, Journal of Fluid Mechanics.
[109] N. Holmes,et al. Phase transition in fluid nitrogen at high densities and temperatures , 1984 .
[110] Xinbing Liu,et al. Picosecond x-rays from subpicosecond-laser-produced hot-dense matter , 1995 .
[111] Nelson M. Hoffman,et al. MEASUREMENT OF FEEDTHROUGH AND INSTABILITY GROWTH IN RADIATION-DRIVEN CYLINDRICAL IMPLOSIONS , 1997 .
[112] R. London,et al. Two-dimensional interferogram of an exploding selenium foil using a soft X-ray laser interferometer , 1996 .
[113] Mordecai D. Rosen,et al. The science applications of the high-energy density plasmas created on the Nova laser , 1996 .
[114] T. S. Perry,et al. Opacity Measurements in a Hot Dense Medium , 1991, Physical review letters.
[115] Holmes,et al. Demonstration of 0.75 Gbar planar shocks in x-ray driven colliding foils. , 1993, Physical review letters.
[116] Raymond C. Elton,et al. X-ray lasers , 1990 .
[117] J. D. Kilkenny,et al. Recent diagnostic developments at Nova (invited) , 1992 .
[118] Ross,et al. Temperature measurements and dissociation of shock-compressed liquid deuterium and hydrogen. , 1995, Physical review. B, Condensed matter.
[119] Uri Alon,et al. Nonlinear evolution of multimode Rayleigh–Taylor instability in two and three dimensions , 1995 .
[120] J. Glanz. Bringing the Stars Down to Earth , 1997, Science.
[121] Liquid metallic hydrogen and the structure of brown dwarfs and giant planets , 1996, astro-ph/9703007.
[122] Swain,et al. Shock launching in silicon studied with use of pulsed x-ray diffraction. , 1987, Physical review. B, Condensed matter.
[123] J E Trebes,et al. X-ray laser microscopy of rat sperm nuclei. , 1992, Science.
[124] Tabak,et al. Absorption of ultra-intense laser pulses. , 1992, Physical review letters.