Growth Rates of the Electrostatic Waves in Radio Zebra Models

被引:8
作者
Benacek, Jan [1 ]
Karlicky, Marian [2 ]
机构
[1] Masaryk Univ, Dept Theoret Phys & Astrophys, Kotlarska 2, CZ-61137 Brno, Czech Republic
[2] Acad Sci Czech Republ, Astron Inst, CZ-25165 Ondrejov, Czech Republic
关键词
instabilities; methods: analytical; methods: numerical; planets and satellites: individual (Jupiter); pulsars: individual (Crab Nebula pulsar); Sun: radio radiation; CYCLOTRON MASER INSTABILITY; CORONAL MAGNETIC-FIELD; FINE-STRUCTURE; PLASMA-WAVES; SOLAR; EMISSION; PATTERN; ORIGIN;
D O I
10.3847/1538-4357/ab2bfc
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Zebras were observed not only in the solar radio emission but also in radio emissions of Jupiter and the Crab Nebula pulsar. In their models, growth rates of the electrostatic waves play an important role. Considering the plasma composed from the thermal background plasma and hot and rare component with the Dory-Guest-Harris distribution, we compute the growth rates. and dispersion branches of the electrostatic waves in the omega - k(perpendicular to) domain. We show complexity of the electrostatic wave branches in the upper-hybrid band. In order to compare the results, which we obtained using the kinetic theory and particle-in-cell (PIC) simulations, we define and compute the integrated growth rate Gamma, where the "characteristic width" of dispersion branches was considered. We found a very good agreement between the integrated growth rates and those from PIC simulations. For maximal and minimal G we showed locations of dispersion branches in the omega - k(perpendicular to) domain. We found that G has a maximum when the dispersion branches not only cross the region with high growth rates., but when the dispersion branches in this region are sufficiently long and wide. We also mentioned the effects of changes in the background plasma and hot component temperatures.
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页数:8
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共 34 条
  • [1] On the origin of microwave zebra pattern
    Altyntsev, AT
    Kuznetsov, AA
    Meshalkina, NS
    Rudenko, GV
    Yan, YH
    [J]. ASTRONOMY & ASTROPHYSICS, 2005, 431 (03): : 1037 - 1046
  • [2] [Anonymous], 2015, PLASMA PHYS INTRO
  • [3] ASCHWANDEN MJ, 1990, ASTRON ASTROPHYS SUP, V85, P1141
  • [4] Double plasma resonance instability as a source of solar zebra emission
    Benacek, J.
    Karlicky, M.
    [J]. ASTRONOMY & ASTROPHYSICS, 2018, 611
  • [5] Benacek J., 2017, ASTRON ASTROPHYS, V555, pA1
  • [6] Buneman O., 1985, TECH REP
  • [7] SPATIALLY AND SPECTRALLY RESOLVED OBSERVATIONS OF A ZEBRA PATTERN IN A SOLAR DECIMETRIC RADIO BURST
    Chen, Bin
    Bastian, T. S.
    Gary, D. E.
    Jing, Ju
    [J]. ASTROPHYSICAL JOURNAL, 2011, 736 (01)
  • [8] Chen F. F., 2012, Introduction to Plasma Physics
  • [9] Chernov GP, 2011, ASTROPHYS SPACE SC L, V375, P1, DOI 10.1007/978-3-642-20015-1
  • [10] UNSTABLE ELECTROSTATIC PLASMA WAVES PROPAGATING PERPENDICULAR TO A MAGNETIC FIELD
    DORY, RA
    GUEST, GE
    HARRIS, EG
    [J]. PHYSICAL REVIEW LETTERS, 1965, 14 (05) : 131 - &