A quasi-static model for hot-electron interaction with self-generated magnetic fields

被引:2
|
作者
Curcio, A. [1 ]
Volpe, L. [2 ,3 ]
机构
[1] CERN, Geneva, Switzerland
[2] CLPU Ctr Laseres Pulsados, Parque Cient, E-37185 Salamanca, Spain
[3] Univ Salamanca, Salamanca, Spain
关键词
hot-electrons; self-generated magnetic fields; electron-focusing in plasmas;
D O I
10.1088/1361-6587/ab0d6e
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The time evolution of the target temperature and ionization degree during the laser-target interaction is of primary importance to understanding the transition between solid and plasma. When the interaction lasts a few tens of femtoseconds, the target resistivity is not well known as in the Spitzer regime, and therefore approximated information must be used from experiments and/or from models. The calculation of the target temperature and the magnetic fields produced inside the target after the propagation of a fast electron current is performed in this paper accounting for the pulse temporal envelope and making use of a complete resistivity model. Analytic calculations of temporal and spatial varying magnetic fields are also presented. Finally, a novel interpretation of the beam hollowing phenomenon is given based on the outcomes of the model developed.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] FIREX Project and Effects of Self-generated Electric and Magnetic Fields on Electron Driven Fast Ignition
    Mima, Kunioki
    Sunahara, A.
    Shiraga, Hiroyuki
    Nishimura, H.
    Azechi, H.
    Johzaki, T.
    Nagatomo, H.
    Garcia, C.
    Veralde, P.
    INTERNATIONAL SYMPOSIUM ON WAVES, COHERENT STRUCTURES, AND TURBULENCE IN PLASMAS, 2010, 1308 : 37 - +
  • [42] Electron energization dynamics in interaction of self-generated magnetic vortices in upstream of collisionless electron/ion shocks
    N. Naseri
    S. G. Bochkarev
    V. Y. Bychenkov
    V. Khudik
    G. Shvets
    Scientific Reports, 12
  • [43] Electron energization dynamics in interaction of self-generated magnetic vortices in upstream of collisionless electron/ion shocks
    Naseri, N.
    Bochkarev, S. G.
    Bychenkov, V. Y.
    Khudik, V
    Shvets, G.
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [44] Effect of self-generated magnetic fields on fast-electron beam divergence in solid targets
    Yuan, X. H.
    Robinson, A. P. L.
    Quinn, M. N.
    Carroll, D. C.
    Borghesi, M.
    Clarke, R. J.
    Evans, R. G.
    Fuchs, J.
    Gallegos, P.
    Lancia, L.
    Neely, D.
    Quinn, K.
    Romagnani, L.
    Sarri, G.
    Wilson, P. A.
    McKenna, P.
    NEW JOURNAL OF PHYSICS, 2010, 12
  • [45] HOT-ELECTRON PLASMA CONFINEMENT IN MAGNETIC FIELDS WITH COMPENSATING CURVATURE
    HARTMAN, CW
    PHYSICS OF FLUIDS, 1967, 10 (08) : 1685 - &
  • [46] HOT-ELECTRON ENERGY RELAXATION IN QUANTIZING MAGNETIC-FIELDS
    MULLER, W
    KOHL, F
    PARTL, H
    GORNIK, E
    SOLID-STATE ELECTRONICS, 1978, 21 (01) : 235 - 240
  • [47] THEORY OF HOT-ELECTRON TRANSPORT IN STRONG MAGNETIC-FIELDS
    WAKAHARA, S
    ANDO, T
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1992, 61 (04) : 1257 - 1270
  • [48] HOT-ELECTRON ENERGY RECOMBINATION IN QUANTIZING MAGNETIC-FIELDS
    MULLER, W
    KOHL, F
    PARTL, H
    GORNIK, E
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1977, 22 (06): : 708 - 708
  • [49] Classical theory of hot-electron transport in electric and magnetic fields
    Weng, MQ
    Wu, HS
    COMMUNICATIONS IN THEORETICAL PHYSICS, 2002, 38 (03) : 370 - 374
  • [50] A relativistic quasi-static model for electrons in intense laser fields
    Chen, BZ
    CHINESE PHYSICS, 2001, 10 (01): : 44 - 45