Generation of laser plasma bunches with a high efficiency of energy concentration for laboratory simulation of collisionless shock waves in magnetised cosmic plasma

被引:9
作者
Zakharov, Yu. P. [1 ]
Ponomarenko, A. G. [1 ]
Tishchenko, V. N. [1 ]
Antonov, V. M. [1 ]
Melekhov, A. V. [1 ]
Posukh, V. G. [1 ]
Prokopov, P. A. [1 ]
Terekhin, V. A. [2 ]
机构
[1] Russian Acad Sci, Inst Laser Phys, Siberian Branch, Prosp Akad Lavrenteva 13-3, Novosibirsk 630090, Russia
[2] All Russian Res Inst Expt Phys VNIIEF, Russian Fed Nucl Ctr, Prosp Mira 37, Sarov 607190, Nizhnii Novgoro, Russia
关键词
highly efficient generation of laser plasma; background plasma in a magnetic field; collisionless interaction model of super-Alfven flows; Larmor radius of ions; diamagnetic cavity; collisionless shock waves; laboratory astrophysics; ABLATION; DYNAMICS; MODEL;
D O I
10.1070/QEL16067
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We present the results of first experiments on the formation of collisionless shock waves (CSWs) in background plasma by injecting laser plasma bunches transverse to the magnetic field (as a piston) with a maximum energy up to 100 J per unit of solid angle and with a high enough degree of ion magnetisation. With this aim in view, on a unique KI-1 facility at the Institute of Laser Physics, Siberian Branch of the Russian Academy of Sciences (ILP), a plastic (polyethylene) target irradiated by a CO2 laser in the most energy-efficient regime (near the plasma formation threshold) and a highly ionised hydrogen plasma with a high concentration in a large volume (not less than 1 m(3)) have been employed. As a result of model experiments performed on the basis of a model of collisionless interaction of plasma flows, developed at the VNIIEF and being adequate to the problem under consideration, not only an intensive, background-induced, deceleration of a super-Alfven laser plasma flow, but also the formation in that flow of a strong perturbation having the properties of a subcritical CSW and propagating transverse to the magnetic field, have been first registered in the laboratory conditions.
引用
收藏
页码:399 / 405
页数:7
相关论文
共 44 条
  • [21] Formation of hot flow anomalies and solitary shocks
    Omidi, N.
    Sibeck, D. G.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2007, 112 (A1)
  • [22] Collisionless shock experiments with lasers and observation of Weibel instabilities
    Park, H. -S.
    Huntington, C. M.
    Fiuza, F.
    Drake, R. P.
    Froula, D. H.
    Gregori, G.
    Koenig, M.
    Kugland, N. L.
    Kuranz, C. C.
    Lamb, D. Q.
    Levy, M. C.
    Li, C. K.
    Meinecke, J.
    Morita, T.
    Petrasso, R. D.
    Pollock, B. B.
    Remington, B. A.
    Rinderknecht, H. G.
    Rosenberg, M.
    Ross, J. S.
    Ryutov, D. D.
    Sakawa, Y.
    Spitkovsky, A.
    Takabe, H.
    Turnbull, D. P.
    Tzeferacos, P.
    Weber, S. V.
    Zylstra, A. B.
    [J]. PHYSICS OF PLASMAS, 2015, 22 (05)
  • [23] Paul J.W.M., 1971, Plasma Physics and Controlled Nuclear Fusion Research, Volume, VIII, P251
  • [24] Laser plasma experiments to simulate coronal mass ejections during giant solar flare and their strong impact on magnetospheres
    Ponomarenko, Arnold G.
    Zakharov, Yuri P.
    Antonov, Vladimir M.
    Boyarintsev, Eduard L.
    Melekhov, Alexandr V.
    Posukh, Vitaliy G.
    Shaikhislamov, Ildar F.
    Vchivkov, Konstantin V.
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2007, 35 (04) : 813 - 821
  • [25] Experimental study of subcritical laboratory magnetized collisionless shocks using a laser-driven magnetic piston
    Schaeffer, D. B.
    Everson, E. T.
    Bondarenko, A. S.
    Clark, S. E.
    Constantin, C. G.
    Winske, D.
    Gekelman, W.
    Niemann, C.
    [J]. PHYSICS OF PLASMAS, 2015, 22 (11)
  • [26] Laser-driven, magnetized quasi-perpendicular collisionless shocks on the Large Plasma Device
    Schaeffer, D. B.
    Everson, E. T.
    Bondarenko, A. S.
    Clark, S. E.
    Constantin, C. G.
    Vincena, S.
    Van Compernolle, B.
    Tripathi, S. K. P.
    Winske, D.
    Gekelman, W.
    Niemann, C.
    [J]. PHYSICS OF PLASMAS, 2014, 21 (05)
  • [27] Generation of magnetized collisionless shocks by a novel, laser-driven magnetic piston
    Schaeffer, D. B.
    Everson, E. T.
    Winske, D.
    Constantin, C. G.
    Bondarenko, A. S.
    Morton, L. A.
    Flippo, K. A.
    Montgomery, D. S.
    Gaillard, S. A.
    Niemann, C.
    [J]. PHYSICS OF PLASMAS, 2012, 19 (07)
  • [28] Winske D., 2012, LAUR1222823 LANL
  • [29] Collisionless shock and supernova remnant simulations on VULCAN
    Woolsey, NC
    Ali, YA
    Evans, RG
    Grundy, RAD
    Pestehe, SJ
    Carolan, PG
    Conway, NJ
    Dendy, RO
    Helander, P
    McClements, KG
    Kirk, JG
    Norreys, PA
    Notley, MM
    Rose, SJ
    [J]. PHYSICS OF PLASMAS, 2001, 8 (05) : 2439 - 2445
  • [30] EARLY-TIME MODEL OF LASER PLASMA EXPANSION
    WRIGHT, TP
    [J]. PHYSICS OF FLUIDS, 1971, 14 (09) : 1905 - &