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The evolution of high-energy-density physics: From nuclear testing to the superlasers

Published online by Cambridge University Press:  09 March 2009

E. Michael Campbell
Affiliation:
Lawrence Livermore National Laboratory, Livermore, CA 94550, USA
Neil C. Holmes
Affiliation:
Lawrence Livermore National Laboratory, Livermore, CA 94550, USA
Steven B. Libby
Affiliation:
Lawrence Livermore National Laboratory, Livermore, CA 94550, USA
Bruce A. Remington
Affiliation:
Lawrence Livermore National Laboratory, Livermore, CA 94550, USA
Edward Teller
Affiliation:
Lawrence Livermore National Laboratory, Livermore, CA 94550, USA
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Abstract

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We describe the role for the next-generation “superlasers” in the study of matter under extremely high-energy-density conditions in comparison with previous uses of nuclear explosives for this purpose. As examples, we focus on three important areas of physics that have unresolved issues that must be addressed by experiment: equations of state, hydrodynamic instabilities, and the transport of radiation. We describe some of the advantages the large lasers will have in a comprehensive, laboratory-based experimental program.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1997

References

REFERENCES

Al'tschuler, L.V. 1965 Sov. Phys. Uspekhi 8, 52.CrossRefGoogle Scholar
Albritton, J.R. & Liberman, D.A. 1994 JQSRT 51, 9.CrossRefGoogle Scholar
Andre, M. 1995 First Annual International Conf. on Solid State Lasers for Application to ICF (Monterey, CA).Google Scholar
Andriyash, A.V. & Simonenko, V.A. 1984 Topics Atomic Sci. Technol. 2, 52.Google Scholar
Avrorin, E. et al. 1987 Sov. Phys. JETP 66, 348.Google Scholar
Avrorin, E.N. et al. 1993 Phys. Uspekhi 36, 337.CrossRefGoogle Scholar
Bar-Shalom, A. et al. 1989 Phys. Rev. A 40, 3183.CrossRefGoogle Scholar
Barnes, J.F. et al. 1974 J. Appl. Phys. 45, 727.CrossRefGoogle Scholar
Benjamin, R.F. & Fritz, J.N. 1987 Phys. Fluids 30, 331.CrossRefGoogle Scholar
Bethe, H.A. 1995 Science 269, 1455.CrossRefGoogle Scholar
Bodner, S.E. 1974 Phys. Rev. Lett. 33, 761.CrossRefGoogle Scholar
Bonazza, R. & Sturtevant, B. 1996 Phys. Fluids 8, 2496.CrossRefGoogle Scholar
Brouillette, M. & Sturtevant, B. 1994 J. Fluid Mech. 263, 271.CrossRefGoogle Scholar
Brueckner, K.A. et al. 1974 Phys. Fluids 17, 1554.CrossRefGoogle Scholar
Budil, K.S. et al. 1996 Phys. Rev. Lett. 76, 4536.CrossRefGoogle Scholar
Bulanov, S.V. et al. 1996 Physica Scripta T63, 280.CrossRefGoogle Scholar
Campbell, E.M. 1991 Lasers Part. Beams 9, 209.CrossRefGoogle Scholar
Campbell, E.M. et al. 1995 In Proc. of the 1995 APS Topical Conf. on Shock Compression of Condensed Matter (Seattle, WA).Google Scholar
Cauble, R.C. et al. 1993 Phys. Rev. Lett. 70, 2102.CrossRefGoogle Scholar
Cauble, R.C. et al. 1995 Phys. Rev. Lett. 74, 3816.CrossRefGoogle Scholar
Cauble, R.C. et al. 1997 Phys. Plasmas 4, 1857.CrossRefGoogle Scholar
Cerniello, C. 1996 (Sept.) Arms Control Today 26, 21.Google Scholar
Cherfils, C. et al. 1997a In Proc. of the LIRPP Conf. (in press).Google Scholar
Cherfils, C. et al. 1997b Proc of the 6th Int. Workshop on the Physics of Compressible Turbulent Mixing (Marseille, France) (in press).Google Scholar
Chevalier, R. & Blondin, J. 1995 Ap. J. 444, 312.CrossRefGoogle Scholar
Chocs No. 13 1995 Rev. Sci. Tech. Dir. Appl. Milit.Google Scholar
Christensen-Dalsgaard, J. et al. 1996 Science 272, 1286.CrossRefGoogle Scholar
Cox, A.N. & Taber, J.E. 1976 Ap. J. Suppl. 31, 271.CrossRefGoogle Scholar
Dahlburg, J.P. et al. 1993 Phys. Fluids B 5, 571.CrossRefGoogle Scholar
Da Silva, L.B. et al. 1992a Phys. Rev. Lett. 69, 438.CrossRefGoogle Scholar
Da Silva, L.B. et al. 1992b Science 258, 269.CrossRefGoogle Scholar
Da Silva, L.B. et al. 1995 Phys. Rev. Lett. 74, 3991.CrossRefGoogle Scholar
Da Silva, L.B. et al. 1996 IEEE Trans. Plasma Sci. 24, 31.CrossRefGoogle Scholar
Da Silva, L.B. et al. 1997 Phys. Rev. Lett. 78, 483.CrossRefGoogle Scholar
Dimonte, G. & Remington, B.A. 1993 Phys. Rev. Lett. 70, 1806.CrossRefGoogle Scholar
Dimonte, G. et al. 1995 Phys. Rev. Lett. 74, 4855.CrossRefGoogle Scholar
Dimonte, G. et al. 1996a Phys. Plasmas 3, 614.CrossRefGoogle Scholar
Dimonte, G. et al. 1996b Rev. Sci. Instr. 67, 302.CrossRefGoogle Scholar
Eder, D.C. & Mathews, D.L. 1994 X-Ray Lasers 1994: 4th International Colloquium, AIP Conf. Proc. 332.Google Scholar
Eliezer, S. & Ricchi, R.A., eds. 1991 High Pressure Equations of State: Theory and Applications (North Holland, Amsterdam).Google Scholar
Eliezar, S. et al. 1986 Equations of State (Cambridge University Press).Google Scholar
Elton, R. 1990 X-Ray Lasers (Academic Press, New York).Google Scholar
Evans, A.M. et al. 1996a Laser Part. Beams 14, 113.CrossRefGoogle Scholar
Evans, A.M. et al. 1996b In Proc. of the Laser Interactions with Matter (Oxford University Press), p. 235.Google Scholar
Faral, B. et al. 1990 Phys. Fluids B 2, 371.CrossRefGoogle Scholar
Fortov, V.E. & Kostin, V.V. 1991 J. Appl. Phys. 70, 4524.CrossRefGoogle Scholar
Fu, S. et al. 1995 Phys. Plasmas 2, 3461.CrossRefGoogle Scholar
Glanz, J. 1997 Science 276, 351.CrossRefGoogle Scholar
Glendinning, S.G. et al. 1997 Proc. of the 6th International Workshop on the Physics of Compressible Turbulent Mixing (Marseille, France) (in press).Google Scholar
Goodwin, I. 1996 (Dec.) Physics Today 49, 37.CrossRefGoogle Scholar
Griem, H. 1974 Spectral Line Broadening by Plasmas (Academic Press, New York).Google Scholar
Hammel, B.A. et al. 1993 Phys. Fluids 5, 2259.CrossRefGoogle Scholar
Hammel, B.A. et al. 1994 Phys. Plasmas 1, 1662.CrossRefGoogle Scholar
Hartemann, F.V. et al. 1995 Phys. Rev. E 51, 4833.CrossRefGoogle Scholar
Hauer, A. et al. 1996 Bull. Am. Phys. Soc. 41, 1600.Google Scholar
Hecht, J. et al. 1995 Laser Part. Beams 13, 423.CrossRefGoogle Scholar
Henderson, D.B. et al. 1975 Phys. Rev. Lett. 33, 205.CrossRefGoogle Scholar
Henry, B.I. 1983 Laser Part. Beams 1, 11.CrossRefGoogle Scholar
Holian, K.S. 1984 T-4 Handbook of Material Properties Data Bases, Vol. 1C EOS LA-10160-MS.Google Scholar
Holmes, N.C. 1991 High-Pressure Science and Technology, Schmidt, S.C. et al. , eds. (AIP, New York), p. 153.Google Scholar
Holmes, N.C. et al. 1984 Appl. Phys. Lett. 45, 626.CrossRefGoogle Scholar
Holmes, N.C. et al. 1995 Phys. Rev. B 52, 15835.CrossRefGoogle Scholar
Hora, H. 1991 Plasmas at High Temperature and Density (Springer-Verlag, Heidelberg).Google Scholar
Hora, H. & Henry, B.I. 1983 Opt. Commun. 44, 218.Google Scholar
Hsing, W. et al. 1997a Phys. Rev. Lett. 78, 3876.CrossRefGoogle Scholar
Hsing, W. et al. 1997b Phys. Plasmas 4, 1832.CrossRefGoogle Scholar
Hubbard, W.B. 1997 Phys. Plasmas 4, 2011.CrossRefGoogle Scholar
Hubbard, W.B. et al. 1995 In Elementary Processes in Dense Plasmas: Proc. of the Oji International Seminar, Ichimaru, S. & Ogata, S., eds. (Addison-Wesley, Menlo Park, CA), p. 227.Google Scholar
Hubbard, W.H. & DeWitt, H.E. 1985 Ap. J. 290, 388.CrossRefGoogle Scholar
Iglesias, C.A. 1995 JQSRT 54 185.CrossRefGoogle Scholar
Inglis, D.R. & Teller, E. 1939 Ap. J. 90, 439.CrossRefGoogle Scholar
Jacobs, J.W. & Catton, I. 1988 J. Fluid Mech. 187, 353.CrossRefGoogle Scholar
Jacobs, J.W. & Sheeley, J.M. 1996 Phys. Fluids 8, 405.CrossRefGoogle Scholar
Kalantar, D.H. et al. 1997 Proc. of the 6th International Workshop on the Physics of Compressible Turbulent Mixing (Marseille, France) (in press).Google Scholar
Kalantar, D.H. et al. 1997a Annual Meeting of the American Crystallographic Assoc. (St. Louis, MO).Google Scholar
Kalantar, D.H. et al. 1997b Rev. Sci. Instr. 68, 814.CrossRefGoogle Scholar
Kane, J. et al. 1997 Ap. J. 478, L75.CrossRefGoogle Scholar
Karzas, W.J. & Latter, R. 1961a Ap. J. 134, 665.Google Scholar
Karzas, W.J. & Latter, R. 1961b Ap. J. Suppl. 6, 167.CrossRefGoogle Scholar
Keeny, S.M. Jr. Jr. & Cerniello, C. 1996 (Aug) Arms Control Today 26, 15.Google Scholar
Kilkenny, J.D. 1992 Rev. Sci. Instr. 63, 4688.CrossRefGoogle Scholar
Kittel, C. 1976 Principles of Solid State Physics, 5th ed. (John Wiley, New York), p. 64.Google Scholar
Klein, R.I. et al. 1994 Ap. J. 420, 213.CrossRefGoogle Scholar
Koenig, M. 1995 Phys. Rev. Lett. 74, 2260.CrossRefGoogle Scholar
Kopyshev, V.P. 1977 Chisl. Metody Mekh Splosh. Sred 8, 54.Google Scholar
Kucherenko, Y.A. et al. 1991 In Proc. of the 3rd International Workshop on the Physics of Compressible Turbulent Mixing (Royaumont, France), p. 427.Google Scholar
Kucherenko, Y.A. et al. 1993 In Proc. of the 4th International Workshop on the Physics of Compressible Turbulent Mixing (Cambridge, UK), pp. 57, 70, 129.Google Scholar
Lawler, A. 1997 Science 275, 1254.Google ScholarPubMed
Lee, R.W. et al. 1995 UCRL-LR-119170; http://www.llnl.gov/tid/lof/documents/citation-action-page/228189.htmlGoogle Scholar
Liberman, D.A. 1982 JQSRT 27 335.CrossRefGoogle Scholar
Lindl, J. 1995 Phys. Plasmas 2, 3933.CrossRefGoogle Scholar
Lindl, J.D. & Mead, W.C. 1975 Phys. Rev. Lett. 34, 1273.CrossRefGoogle Scholar
Löwer, T. & Sigel, R. 1993 Contrib. Plasma Phys. 33, 355.CrossRefGoogle Scholar
Löwer, T. et al. 1994 Phys. Rev. Lett. 72, 3186.CrossRefGoogle Scholar
Luo, D. & McCray, R. 1991 Ap. J. 379, 659.CrossRefGoogle Scholar
Luo, D. & McCray, R. 1994 Ap. J. 430, 264.CrossRefGoogle Scholar
Magee, N.H. Jr., et al. , 1984 Ap. J. 283, 264.CrossRefGoogle Scholar
Marinak, M. et al. 1995 Phys. Rev. Lett. 75, 3677.CrossRefGoogle Scholar
Marley, M.S. & Hubbard, W.B. 1988 Icarus 73, 536.CrossRefGoogle Scholar
Mason, R.J. 1996 In 26th Anomalous Absorption Conf. (Fairbanks, AK).Google Scholar
Mayer, H. 1947 Los Alamos Report LA647 (AECD-1870).Google Scholar
Mayer, M.G. 1941 Phys. Rev. 60, 184.CrossRefGoogle Scholar
McKay, A. 1984 The Making of the Atomic Age (Oxford University Press, New York).Google Scholar
Meyer-Ter-Vehn, J. & Oparin, A. 1995 In Elementary Processes in Dense Plasmas: Proc. of the Oji International Seminar, Ichimaru, S. & Ogata, S., eds. (Addison-Wesley, Menlo Park, CA), p. 283.Google Scholar
Meyers, M.A. 1994 Dynamic Behavior of Materials (John Wiley, New York).CrossRefGoogle Scholar
Miller, P. et al. 1995 In Proc. of the 20th International Symp. of Shock Waves (Pasadena, CA).Google Scholar
Mitchell, A.C. 1991 J. Appl. Phys. 69, 2981.CrossRefGoogle Scholar
Moore, C.E. 1949 NBS Circ. 467, 1.Google Scholar
Müller, E. et al. 1991 Astron. Astrophys. 251, 505.Google Scholar
Nellis, W.J. 1984 Phys. Rev. Lett. 53, 1661.CrossRefGoogle Scholar
Nellis, W.J. 1995 Science 269, 1249.CrossRefGoogle Scholar
Nellis, W.J. et al. 1991 J. Chem. Phys. 94, 2244.CrossRefGoogle Scholar
Nikiforov, A.F. et al. 1978 Vopr. At. Nauki Tekh. 3, 62.Google Scholar
Nikiforov, A.F. et al. 1979 Vopr. At. Nauki Tekh. 4, 16.Google Scholar
Nikiforov, A.F. et al. 1989 Mathematical Simulation: Physical-Chemical Properties of Matter (Nauka, Moscow), p. 162.Google Scholar
Nishihara, K. & Sakagama, H. 1990 Phys. Rev. Lett. 65, 432.Google Scholar
Nuckolls, J. et al. 1972 Nature 239, 139.CrossRefGoogle Scholar
Paisner, J.A. et al. 1994 Fusion Technol. 26, 755.CrossRefGoogle Scholar
Perry, M.D. & Mourou, G. 1994 Science 264, 917.CrossRefGoogle Scholar
Perry, T.S. et al. 1991 Phys. Rev. Lett. 67, 3784.CrossRefGoogle Scholar
Perry, T.S. et al. 1994 JQSRT 51, 273.CrossRefGoogle Scholar
Perry, T.S. et al. 1997 Phys. Rev. E (submitted).Google Scholar
Peyser, T.A. 1995 Phys. Rev. Lett. 75, 2332.CrossRefGoogle Scholar
Pukhov, A. & Meyer-Ter-Vehn, J. 1996 Phys. Rev. Lett. 76, 3975.CrossRefGoogle Scholar
Radousky, H.B. et al. 1986 Phys. Rev. Lett. 57, 2419.CrossRefGoogle Scholar
Ragan, C.E. III et al. 1997 J. Appl. Phys. 48, 2860.CrossRefGoogle Scholar
Read, K.I. 1984 Physica D 12, 45.CrossRefGoogle Scholar
Remington, B.A. et al. 1997 Phys. Plasmas 4, 1994.CrossRefGoogle Scholar
Remington, B.A. et al. 1996a Bull. Am. Phys. Soc. 41, 1354.Google Scholar
Remington, B.A. et al. 1996b Proc. of the 5th International Workshop on Compressible Turbulent Mixing, Young, R et al. , eds. (World Scientific, NJ), p. 265.Google Scholar
Remington, B.A. et al. 1996c In Proc of the LIRPP Conf, Nakai, S. & Miley, G.H., eds. (AIP Press, NY), p. 115.Google Scholar
Rogers, F.J. 1981 Phys. Rev. A 24, 1531.CrossRefGoogle Scholar
Rogers, F.J. & Iglesias, C.A. 1994 Science 263, 50.CrossRefGoogle Scholar
Rosen, M. 1996 Phys. Plasmas 3, 1803.CrossRefGoogle Scholar
Ross, M. 1987 J. Chem. Phys. 86, 7110.CrossRefGoogle Scholar
Saumon, D. & Chabrier, G. 1992 Phys. Rev. A 46, 2084.CrossRefGoogle Scholar
Schneider, M. et al. 1997 In Proc. of the 6th Int. Workshop on the Phys. of Compressible Turbulent Mixing (Marseille, France) (in press).Google Scholar
Shvarts, D. et al. 1995 Phys. Plasmas 2, 2465.CrossRefGoogle Scholar
Simonenko, V.A. et al. 1985 Sov. Phys. JETP 61, 869.Google Scholar
Sin'ko, G.V. 1979 Teplofix. Vys. Temp. 2, 1041.Google Scholar
Springer, P.T. et al. 1992 Phys. Rev. Lett. 69, 3735.CrossRefGoogle Scholar
Stevenson, D.J. 1975 Phys. Rev. B 12, 3999.CrossRefGoogle Scholar
Stevenson, D.J. 1976 Phys. Lett. 58A, 282.CrossRefGoogle Scholar
Suzuki, T. et al. 1993 Astron. Astrophys. 274, 883.Google Scholar
Swegle, J.W. & Robinson, A.C. 1989a J. Appl. Phys. 66, 2838.CrossRefGoogle Scholar
Swegle, J.W. & Robinson, A.C. 1989b J. Appl. Phys. 66, 2859.CrossRefGoogle Scholar
Tabak, M. et al. 1993 Phys. Plasmas 1, 2010.Google Scholar
Teller, E. 1987 Encyclopedia of Physical Science and Technology, Vol. 5 (Academic Press, New York), p. 723.Google Scholar
Town, R.P.J. & Bell, A.R. 1991 Phys. Rev. Lett. 67, 1863.CrossRefGoogle Scholar
Trunin, R.F. 1994 Phys. Uspekhi 37, 1123.CrossRefGoogle Scholar
Tryggvason, G. & Unverdi, S.O. 1990 Phys. Fluids A 2, 656.CrossRefGoogle Scholar
Umstadter, D. et al. 1995 JQSRT 54, 401.CrossRefGoogle Scholar
Umstadter, D. et al. 1996 Science 273, 472.CrossRefGoogle Scholar
Velikovich, A.L. & Dimonte, G. 1996 Phys. Rev. Lett. 76, 3112.CrossRefGoogle Scholar
Vetter, M. & Sturtevant, B. 1995 Shock Waves 4, 247.CrossRefGoogle Scholar
Wan, A.S. et al. 1997 Phys. Rev. E 55, 6293.CrossRefGoogle Scholar
Wark, J.S. et al. 1987 Phys. Rev. B 35, 9391.CrossRefGoogle Scholar
Wark, J.S. et al. 1989 Phys. Rev. B 40, 5705.CrossRefGoogle Scholar
Wark, J.S. et al. 1990 J. Appl. Phys. 68, 4531.CrossRefGoogle Scholar
Wark, J.S. et al. 1992 Appl. Phys. Lett. 61, 651.CrossRefGoogle Scholar
Wark, J.S. et al. 1996 Bull. Am. Phys. Soc. 41, 1600.Google Scholar
Weir, S.T. et al. 1996 Phys. Rev. Lett. 76, 1860.CrossRefGoogle Scholar
Weisman, J. 1995 Science 270, 21.Google Scholar
Whitlock, R.R. & Wark, J.S. 1995 Phys. Rev. B 52, 8.CrossRefGoogle Scholar
Wilks, S.C. et al. 1992 Phys. Rev. Lett. 69, 1383.CrossRefGoogle Scholar
Wilks, S.C. et al. 1993 Phys. Fluids 5, 2603.CrossRefGoogle Scholar
Wilson, B.G. & Liberman, D.A. 1994 JQSRT 54, 427.CrossRefGoogle Scholar
Woolsey, N.C. & Wark, J.S. 1997 J. Appl. Phys. 81, 3023.CrossRefGoogle Scholar
Young, D.A. et al. 1985 Phys. Lett. 108A, 157.CrossRefGoogle Scholar
Youngs, D.L. 1984 Physica D 12, 32.CrossRefGoogle Scholar
Zaretskii, E.B. et al. 1991 Sov. Phys. Dokl. 36, 76.Google Scholar
Zel'Dovich, Y.B. & Raizer, Y.P. 1967 Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena (Academic Press, New York).Google Scholar