Heat flux effects on magnetic field dynamics in solid density plasmas traversed by relativistic electron beams

被引:2
|
作者
Williams, B. E. R. [1 ]
Kingham, R. J. [1 ]
Bissell, J. J. [1 ,2 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Blackett Lab, London SW7 2BZ, England
[2] Univ Durham, Dept Math Sci, Durham DH1 3LE, England
基金
英国工程与自然科学研究理事会;
关键词
TRANSPORT;
D O I
10.1088/0741-3335/55/9/095005
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
Relativistic electron beam propagation through solid density plasma is a rich area for magnetic field dynamics. It is well known that Ohmic heating of the background plasma caused by the beam significantly affects magnetic field generation, primarily through changes in the resistivity. In particular, temperature changes in the background plasma leads to the generation of a magnetic field that acts to deflect relativistic electrons from the beam axis. This 'beam hollowing' field could have disastrous implications for the fast ignitor scheme. In this paper, the effects of background heat flow on magnetic field generation are considered, first with a simple analytic investigation, and then with 1D Vlasov Fokker-Planck and classical transport simulations using a rigid beam for the fast electrons. It is shown that the thermal conduction of the background plasma acts to diffuse the temperature, reducing both the temperature gradients and the beam hollowing field. This gives rise to the re-emergence of a collimating magnetic field. The influence of the background heat flux is also investigated in the context of solids with imposed resistivity gradients, and is shown to significantly enhance the magnetic field present. More exotic transport effects, such as an enhanced Nernst velocity (due to non-local heat flux) and double peaked temperature profiles (due to distortion of the heating and heat-flow profiles by the magnetic field), are also reported.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] The role of electron heat flux in guide-field magnetic reconnection
    Hesse, M
    Kuznetsova, M
    Birn, J
    PHYSICS OF PLASMAS, 2004, 11 (12) : 5387 - 5397
  • [32] An Axial Foilless Diode Guided by Composite Magnetic Field for the Production of Relativistic Electron Beams
    Li, Chunxia
    Jin, Xiao
    Wang, Ganping
    Zhang, Beizhen
    Gong, Haitao
    Gan, Yanqing
    Li, Fei
    Song, Falun
    LASER AND PARTICLE BEAMS, 2021, 2021
  • [33] Dynamics of self-accelerating electron beams in a homogeneous magnetic field
    Goutsoulas, Michael
    Efremidis, Nikolaos K.
    PHYSICAL REVIEW A, 2021, 103 (01)
  • [34] Dynamics of Electron Pearcey- Gaussian Beams in a Constant Magnetic Field
    He, Xingyi
    Huang, Haoyu
    Xu, Chuangjie
    Deng, Xiaofang
    Wu, You
    Tang, Huilin
    Xu, Danlin
    Luo, Shengbao
    Liu, Jiatian
    Wu, Ruihuan
    Deng, Dongmei
    ANNALEN DER PHYSIK, 2022, 534 (10)
  • [35] STUDY ON THE MAGNETIC COMPRESSION OF INTENSE RELATIVISTIC ELECTRON-BEAMS UNDER A CONVERGING MAGNETIC GUIDE FIELD
    LIU, GZ
    LIU, NQ
    XIE, X
    QIU, AC
    FAN, YJ
    ZHANG, JS
    ACTA PHYSICA SINICA-OVERSEAS EDITION, 1994, 3 (01): : 36 - 44
  • [36] HEAT-CONDUCTIVITY OF ELECTRON COMPONENT OF PLASMAS ACROSS A MAGNETIC-FIELD
    ZHILINSK.AP
    LIVENTSE.IF
    ZHURNAL TEKHNICHESKOI FIZIKI, 1972, 42 (12): : 2616 - 2618
  • [37] Effects of transverse magnetic field with different alternating currents on heat flux density distributions of plasma arc
    Dong, Xiaojuan
    Meng, Jianbing
    Wei, Xiuting
    Yin, Zhanmin
    Open Mechanical Engineering Journal, 2014, 8 : 387 - 395
  • [38] EFFECTS OF INSTABILITIES AND SCATTERING IN ELECTRON BEAMS IN ABSENCE OF A MAGNETIC FIELD
    KOFOID, MJ
    ZIESKE, P
    PHYSICS OF FLUIDS, 1966, 9 (11) : 2301 - &
  • [39] PARTICLE SIMULATIONS OF MIRROR PLASMAS WITH QUADRUPOLE MAGNETIC-FIELD AND ELECTRON DYNAMICS
    COHEN, BI
    CONDIT, WC
    BYERS, JA
    BRENGLE, TA
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1977, 22 (09): : 1191 - 1191
  • [40] Magnetic field effects on cross section of electron capture in dense plasmas
    Shokri, B
    Tavassoli, H
    Latifi, H
    PHYSICS OF PLASMAS, 2000, 7 (06) : 2689 - 2692