Measurement and analysis of Rayleigh–Taylor instability in targets driven by incoherent laser radiation
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[1] J. Kilkenny,et al. Measurement of Rayleigh–Taylor instability in a laser-accelerated target , 1982, Nature.
[2] Kunioki Mima,et al. Random Phasing of High-Power Lasers for Uniform Target Acceleration and Plasma-Instability Suppression , 1984 .
[3] Mikaelian. LASNEX simulations of the classical and laser-driven Rayleigh-Taylor instability. , 1990, Physical review. A, Atomic, molecular, and optical physics.
[4] D. Kershaw. The incomplete Cholesky—conjugate gradient method for the iterative solution of systems of linear equations , 1978 .
[5] Stephen E. Bodner,et al. Rayleigh-Taylor Instability and Laser-Pellet Fusion , 1974 .
[6] C. Reason,et al. Vulcan - A versatile high-power glass laser for multiuser experiments , 1981, IEEE Journal of Quantum Electronics.
[7] Viana,et al. Nonuniformity imprint on the ablation surface of laser-irradiated targets. , 1992, Physical review letters.
[8] G. Taylor. The instability of liquid surfaces when accelerated in a direction perpendicular to their planes. I , 1950, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[9] K. V. Roberts,et al. MEDUSA a one-dimensional laser fusion code , 1984 .
[10] Emery,et al. Strongly inhibited Rayleigh-Taylor growth with 0.25- microm lasers. , 1986, Physical review letters.
[11] S. P. Obenschain,et al. Use of induced spatial incoherence for uniform illumination on laser fusion targets. Memorandum report , 1983 .
[12] Andrew J. Schmitt,et al. The effects of optical smoothing techniques on filamentation in laser plasmas , 1988 .
[13] G. Pert,et al. Algorithms for the self-consistent generation of magnetic fields in plasmas , 1981 .
[14] D. Munro. Rippled shock front solutions for testing hydrodynamic stability simulations , 1989 .
[15] Emery,et al. Rayleigh-Taylor instability growth rates in targets accelerated with a laser beam smoothed by induced spatial incoherence. , 1987, Physical review letters.
[16] R. Evans. Radiation cooling instabilities in laser-heated plasma , 1981 .
[17] Investigations of pressure nonuniformity in laser-irradiated targets using incoherent optical smoothing , 1991 .
[18] David L. Book,et al. Flux-corrected transport II: Generalizations of the method , 1975 .
[19] G. Pert,et al. Non-linear Rayleigh-Taylor instability in (spherical) laser accelerated targets , 1987 .
[20] J. Gardner,et al. Wavelength scaling for reactor-size laser fusion targets. Memorandum report , 1981 .
[21] F. Floux,et al. Hydrodynamic Behavior of Solid Deuterium under Laser Heating , 1970 .
[22] J. Gardner,et al. The Rayleigh-Taylor instability in direct-drive laser fusion , 1987 .
[23] Munro. Analytic solutions for Rayleigh-Taylor growth rates in smooth density gradients. , 1988, Physical review. A, General physics.
[24] Thermal Instability and Magnetic Field Generated by Large Heat Flow in a Plasma, Especially under Laser-Fusion Conditions , 1981 .
[25] Andrew J. Schmitt,et al. Theory of induced spatial incoherence , 1987 .
[26] L. Rayleigh,et al. The theory of sound , 1894 .
[27] Emil Wolf,et al. Principles of Optics: Contents , 1999 .
[28] Kunioki Mima,et al. Self‐consistent growth rate of the Rayleigh–Taylor instability in an ablatively accelerating plasma , 1985 .
[29] J. D. Kilkenny,et al. Experimental results on hydrodynamic instabilities in laser-accelerated planar packages , 1990 .
[30] H. Motz,et al. The physics of laser fusion , 1979 .
[31] Samuel A. Letzring,et al. Improved laser‐beam uniformity using the angular dispersion of frequency‐modulated light , 1989 .
[32] Savage,et al. Measurement of the Rayleigh-Taylor instability in targets driven by optically smoothed laser beams. , 1990, Physical review letters.
[33] Munro,et al. Large growth Rayleigh-Taylor experiments using shaped laser pulses. , 1991, Physical review letters.