High Power Laser Science and Engineering, 2016, 4 (3): 03000e25, Published Online: Nov. 7, 2016  

Physics and applications with laser-induced relativistic shock waves Download: 1334次

Author Affiliations
1 Institute of Nuclear Fusion, Polytechnic University of Madrid, Spain
2 Applied Physics Division, Soreq NRC Yavne, Israel
3 42 Beery, Rehovot, Israel
Copy Citation Text

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.

References

[1] P. H.Hugoniot,1e Partie. J. Ecole Polytech. (Paris)58, 1 (1887) (Translated in reference 2).

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

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

[4] S.Eliezer and R. A.Ricci, (Eds.) High Pressure Equation of State: Theory and Application, Enrico Fermi School CXIII 1989 (North-Holland, 1991).

[5] S.Eliezer,A. K.Ghatak,H.Hora, and E.Teller,Fundamental of Equation of State (World Scientific, 2002), Previously published as S. Eliezer, A. K. Ghatak, H. Hora and E. Teller, Introduction to Equations of State: Theory and Applications (Cambridge University Press, 1986).

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

[7] S.Eliezer, in Laser–Plasma Interactions and Applications, P.McKenna, D.Neely, R.Bingham and D. A.Jaroszynski  (eds) 68th Scottish Universities Summer School in Physics, (Springer Publication, 2013), p. 49.

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

[9] The ELI project homepage is .

[10] L. D.Landau and E. M.Lifshitz,Fluid Mechanics, 2nd edn (Pergamon Press, 1987).

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

[12] V. E.Fortov and I. V.Lomonosov,Shock Waves20, 53 (2010).

[13] R.Cauble,D. W.Phillion,T. J.Hoover,N. C.Holmes,J. D.Kilkenny, and 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, and H.Kan,Phys. Rev. Lett.102, 235002 (2009).

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

[16] R.Sauerbrey,Phys. Plasmas3, 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, and J.Ullschmied,Phys. Plasmas14, 072701 (2007).

[18] P.Lalousis,H.Hora,S.Eliezer,J. M.Martinez-Val,S.Moustaizis,G. H.Miley, and G.Mourou,Phys. Lett. A377, 885 (2013).

[19] H.Hora,Laser Particle Beams30, 325 (2012).

[20] P.Lalousis,I.Földes, and H.Hora,Laser Particle Beams30, 233 (2012).

[21] T.Esirkepov,M.Borghesi,S. V.Bulanov,G.Mourou, and T.Tajima,Phys Rev. Lett.92, 175003 (2004).

[22] P. L.Robinson,M.Zepf,S.Kar,R. G.Evans, and C.Bellei,New J. Phys.10, 013021 (2008).

[23] G.Marx,Nature211, 22 (1966).

[24] S.Eliezer,N.Nissim,J. M.Martinez Val,K.Mima, and H.Hora,Laser Particle Beams32, 211 (2014).

[25] N.Naumova,T.Schlegel,V. T.Tikhonchuk,C.Labaune,I. V.Sokolov, and G.Mourou,Phys. Rev. Lett102, 025002 (2009).

[26] S.Eliezer,N.Nissim,E.Raicher, and J. M.Martinez Val,Laser Particle Beams32, 243 (2014).

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

[28] S.Eliezer,J. M.Martinez Val, and S. V.Pinhasi,Laser Particle Beams31, 113 (2013).

[29] F.Pegoraro and S. V.Bulanov,Phys. Rev. Lett99, 065002 (2007).

[30] S.Eliezer,Z.Henis,N.Nissim,S. V.Pinhasi, and J. M.Martinez Val,Laser Particle Beams33, 577 (2015).

[31] H. S.Bosch and G. M.Hale,Nuclear Fusion32, 611 (1992).

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

[33] S.Eliezer,A.Ravid,Z.Henis,N.Nissim, and J. M.Martinez Val,Laser Particle Beams34, 343 (2016).

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

[35] J. H.Nuckolls,L.Wood,A.Thiessen, and G. B.Zimmermann,Nature239, 139 (1972).

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

[37] N. G.Basov,S. Y.Guskov, and 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, and R. J.Mason,Phys. Plasmas1, 1626 (1994).

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

[40] H.Hora,P.Lalousis, and 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.

引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!