中文

AD Leo 风暴的微波等离子体辐射

天体物理学 2011-05-23 v1

摘要

One intense radio flare on the dMe star AD Leo, observed with the Effelsberg radio telescope and spectrally resolved in a band of 480 MHz centred at 4.85 GHz is analysed. A lower limit of the brightness temperature of the totally right handed polarized emission is estimated as T_b ~ 5x10^10 K (with values T_b > ~3x10^13 K considered to be more probable), which requires a coherent radio emission process. In the interpretation we favour fundamental plasma radiation by mildly relativistic electrons trapped in a hot and dense coronal loop above electron cyclotron maser emission. This leads to densities and magnetic field strengths in the radio source of n ~ 2x10^11 cm^-3 and B ~ 800 G. Quasi-periodic pulsations during the decay phase of the event suggest a loop radius of r ~ 7x10^8 cm. A filamentary corona is implied in which the dense radio source is embedded in hot thin plasma with temperature T >= 2x10^7 K and density n_ext <= 10^-2 n. Runaway acceleration by sub-Dreicer electric fields in a magnetic loop is found to supply a sufficient number of energetic electrons.

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引用

@article{arxiv.astro-ph/0106369,
  title  = {Microwave plasma emission of a flare on AD Leo},
  author = {A. V. Stepanov and B. Kliem and V. V. Zaitsev and E. Fuerst and A. Jessner and A. Krueger and J. Hildebrandt and J. H. M. M. Schmitt},
  journal= {arXiv preprint arXiv:astro-ph/0106369},
  year   = {2011}
}

备注

12 pages, 8 figures, Astron.Astrophys. in press