The effects of kinetic instabilities on the electron cyclotron emission from runaway electrons

被引:22
作者
Liu, Chang [1 ]
Shi, Lei [2 ]
Hirvijoki, Eero [1 ]
Brennan, Dylan P. [3 ]
Bhattacharjee, Amitava [1 ,3 ]
Paz-Soldan, Carlos [4 ]
Austin, Max E. [5 ]
机构
[1] Princeton Plasma Phys Lab, Princeton, NJ 08540 USA
[2] Univ Calif Irvine, Irvine, CA 92697 USA
[3] Princeton Univ, Princeton, NJ 08544 USA
[4] Gen Atom, San Diego, CA 92186 USA
[5] Univ Texas Austin, Austin, TX 78712 USA
关键词
runaway electron; electron cyclotron emission; synthetic diagnostic; kinetic instability; AVALANCHE;
D O I
10.1088/1741-4326/aacc9b
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
In this paper we show that the kinetic instabilities associated with runaway electron beams play an essential role for the production of high-level non-thermal electron-cyclotron-emission (ECE) radiation. Most of the non-thermal ECE comes from runaway electrons in the low-energy regime with large pitch angle, which are strongly scattered by the excited whistler waves. The power of ECE from runaway electrons is obtained using a synthetic diagnostic model based on the reciprocity method. The electron distribution function is calculated using a kinetic simulation model including the whistler wave instabilities and the quasilinear diffusion effects. Simulations based on DIII-D low-density discharge reproduces the rapid growth of the ECE signals observed in DIII-D experiments. Unlike the thermal ECE where radiation for a certain frequency is strongly localized inside the resonance region, the non-thermal ECE radiation from runaway electrons is nonlocal, and the emission-absorption ratio is higher than that of thermal electrons. The runaway electron tail is more significant for ECE with higher frequencies, and the ECE spectrum becomes flatter as RE population grows. The nonlinear behavior of the kinetic instabilities is illustrated in the oscillations of the ECE waves. 'Fhe good agreement with the DIII-D experimental observations after including the kinetic instabilities clearly illustrate the significance of the scattering effects from wave-particle interactions, which can also be important for runaway electrons produced in disruptions.
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页数:12
相关论文
共 55 条
  • [31] Heat flux viscosity in collisional magnetized plasmas
    Liu, C.
    Fox, W.
    Bhattacharjee, A.
    [J]. PHYSICS OF PLASMAS, 2015, 22 (05)
  • [32] Liu C., 2018, ARXIV180401971
  • [33] Role of Kinetic Instability in Runaway-Electron Avalanches and Elevated Critical Electric Fields
    Liu, Chang
    Hirvijoki, Eero
    Fu, Guo-Yong
    Brennan, Dylan P.
    Bhattacharjee, Amitava
    Paz-Soldan, Carlos
    [J]. PHYSICAL REVIEW LETTERS, 2018, 120 (26)
  • [34] Momentum transport and nonlocality in heat-flux-driven magnetic reconnection in high-energy-density plasmas
    Liu, Chang
    Fox, William
    Bhattacharjee, Amitava
    Thomas, Alexander G. R.
    Joglekar, Archis S.
    [J]. PHYSICAL REVIEW E, 2017, 96 (04)
  • [35] Adjoint method and runaway electron avalanche
    Liu, Chang
    Brennan, Dylan P.
    Boozer, Allen H.
    Bhattacharjee, Amitava
    [J]. PLASMA PHYSICS AND CONTROLLED FUSION, 2017, 59 (02)
  • [36] Nonlinear frequency shift of electrostatic waves in general collisionless plasma: Unifying theory of fluid and kinetic nonlinearities
    Liu, Chang
    Dodin, Ilya Y.
    [J]. PHYSICS OF PLASMAS, 2015, 22 (08)
  • [37] A gyrokinetic collision operator for magnetized Lorentz plasmas
    Liu, Chang
    Qin, Hong
    Ma, Chenhao
    Yu, Xiongjie
    [J]. PHYSICS OF PLASMAS, 2011, 18 (03)
  • [38] MAZZUCATO E, 1985, NUCL FUSION, V25, P1681, DOI 10.1088/0029-5515/25/11/012
  • [39] Moller C, 1932, ANN PHYS-BERLIN, V14, P531
  • [40] KINETIC-THEORY OF RUNAWAY ELECTRON-BEAM INSTABILITY IN A TOKAMAK
    PARAIL, VV
    POGUTSE, OP
    [J]. NUCLEAR FUSION, 1978, 18 (03) : 303 - 314