• High Power Laser Science and Engineering
  • Vol. 4, Issue 3, 03000e25 (2016)
S. Eliezer1、2, J. M. Martinez-Val1, Z. Henis2、*, N. Nissim2, S. V. Pinhasi3, A. Ravid2, M. Werdiger2, and E. Raicher2
Author Affiliations
  • 1Institute of Nuclear Fusion, Polytechnic University of Madrid, Spain
  • 2Applied Physics Division, Soreq NRC Yavne, Israel
  • 342 Beery, Rehovot, Israel
  • show less
    DOI: 10.1017/hpl.2016.24 Cite this Article Set citation alerts
    S. Eliezer, J. M. Martinez-Val, Z. Henis, N. Nissim, S. V. Pinhasi, A. Ravid, M. Werdiger, E. Raicher. Physics and applications with laser-induced relativistic shock waves[J]. High Power Laser Science and Engineering, 2016, 4(3): 03000e25 Copy Citation Text show less
    References

    [1] P. H. Hugoniot. 1e Partie. J. Ecole Polytech. (Paris), 58, 1(1887).

    [2] J. N. Johnson, R. Cheret. Classic Papers in Shock Compression Science(1998).

    [3] Y. B. Zeldovich, Y. P. Raizer. Physics of Shock Waves and High Temperature Hydrodynamic Phenomena(1966).

    [4] S. Eliezer, R. A. Ricci. High Pressure Equation of State: Theory and Application(1991).

    [5] S. Eliezer, A. K. Ghatak, H. Hora, E. TellerIntroduction to Equations of State: Theory and Applications. Fundamental of Equation of State(2002).

    [6] S. Eliezer. The Interaction of High-Power Lasers with Plasmas(2002).

    [7] S. Eliezer, P. McKenna, D. Neely, R. Bingham, D. A. Jaroszynski. Laser–Plasma Interactions and Applications, 49(2013).

    [8] C. Danson, D. Hillier, N. Hopps, D. Neely. High Power Laser Sci. Eng., 3, e3(2015).

    [9]

    [10] L. D. Landau, E. M. Lifshitz. Fluid Mechanics(1987).

    [11] A. H. Taub. Phys. Rev., 74, 328(1948).

    [12] V. E. Fortov, I. V. Lomonosov. Shock Waves, 20, 53(2010).

    [13] R. Cauble, D. W. Phillion, T. J. Hoover, N. C. Holmes, J. D. Kilkenny, R. W. Lee. Phys. Rev. Lett., 70, 2102(1993).

    [14] H. Azechi, T. Sakaiya, T. Watari, M. Karasik, H. Saito, K. Ohtani, K. Takeda, H. Hosoda, H. Shiraga, M. Nakai, K. Shigemori, S. Fukoda, M. Murakami, H. Nagamoto, T. Johzaki, J. Gardner, D. G. Colombant, J. W. Bates, A. L. Velikovich, Y. Aglitsky, J. Weaver, S. Obenschain, S. Eliezer, R. Kodama, T. Norimatsu, H. Fujita, K. Mima, H. Kan. Phys. Rev. Lett., 102(2009).

    [15] H. Hora. Physics of Laser Driven Plasmas(1981).

    [16] R. Sauerbrey. Phys. Plasmas, 3, 4712(1996).

    [17] H. Hora, J. Badziak, M. N. Read, Y. T. Li, T. J. Liang, H. Liu, Z. M. Shang, J. Zhang, F. Osman, G. H. Miley, W. Y. Zhang, X. T. He, H. S. Peng, S. Glowacz, S. Jablonski, J. Wolowski, Z. Skladanowski, K. Jungwirth, K. Rohlena, J. Ullschmied. Phys. Plasmas, 14(2007).

    [18] P. Lalousis, H. Hora, S. Eliezer, J. M. Martinez-Val, S. Moustaizis, G. H. Miley, G. Mourou. Phys. Lett. A, 377, 885(2013).

    [19] H. Hora. Laser Particle Beams, 30, 325(2012).

    [20] P. Lalousis, I. Földes, H. Hora. Laser Particle Beams, 30, 233(2012).

    [21] T. Esirkepov, M. Borghesi, S. V. Bulanov, G. Mourou, T. Tajima. Phys Rev. Lett., 92(2004).

    [22] P. L. Robinson, M. Zepf, S. Kar, R. G. Evans, C. Bellei. New J. Phys., 10(2008).

    [23] G. Marx. Nature, 211, 22(1966).

    [24] S. Eliezer, N. Nissim, J. M. Martinez Val, K. Mima, H. Hora. Laser Particle Beams, 32, 211(2014).

    [25] N. Naumova, T. Schlegel, V. T. Tikhonchuk, C. Labaune, I. V. Sokolov, G. Mourou. Phys. Rev. Lett, 102(2009).

    [26] S. Eliezer, N. Nissim, E. Raicher, J. M. Martinez Val. Laser Particle Beams, 32, 243(2014).

    [27] S. Eliezer, N. Nissim, V. S. Pinhasi, E. Raicher, J. M. Martinez Val. High Power Laser Sci. Eng., 2, e22(2014).

    [28] S. Eliezer, J. M. Martinez Val, S. V. Pinhasi. Laser Particle Beams, 31, 113(2013).

    [29] F. Pegoraro, S. V. Bulanov. Phys. Rev. Lett, 99(2007).

    [30] S. Eliezer, Z. Henis, N. Nissim, S. V. Pinhasi, J. M. Martinez Val. Laser Particle Beams, 33, 577(2015).

    [31] H. S. Bosch, G. M. Hale. Nuclear Fusion, 32, 611(1992).

    [32] S. Atzeni, J. Meyer-Ter-Vehn. The Physics of Inertial Fusion(2004).

    [33] S. Eliezer, A. Ravid, Z. Henis, N. Nissim, J. M. Martinez Val. Laser Particle Beams, 34, 343(2016).

    [34] L. D. Landau, K. P. Stanyukovich. Dokl., 46, 339(1945).

    [35] J. H. Nuckolls, L. Wood, A. Thiessen, G. B. Zimmermann. Nature, 239, 139(1972).

    [36] G. Velarde, N. Carpintero-Santamaria. Inertial Confinement Nuclear Fusion: A Historical Approach by its Pioneers(2007).

    [37] N. G. Basov, S. Y. Guskov, L. P. Feoktistov. J. Soviet Laser Res., 13, 396(1992).

    [38] M. E. Tabak, J. Hammer, M. E. Glinsky, W. L. Kruer, S. C. Wilks, J. Woodworth, E. M. Campbell, M. D. Perry, R. J. Mason. Phys. Plasmas, 1, 1626(1994).

    [39] S. Y. Guskov. Plasma Phys. Rep., 39, 1(2013).

    [40] H. Hora, P. Lalousis, S. Eliezer. Phys. Rev. Lett., 53, 1650(1984).

    S. Eliezer, J. M. Martinez-Val, Z. Henis, N. Nissim, S. V. Pinhasi, A. Ravid, M. Werdiger, E. Raicher. Physics and applications with laser-induced relativistic shock waves[J]. High Power Laser Science and Engineering, 2016, 4(3): 03000e25
    Download Citation