Swinburne
Browse

Tracking of an electron beam through the solar corona with LOFAR

Download (2.66 MB)
journal contribution
posted on 2024-08-06, 11:49 authored by G. Mann, F. Breitling, C. Vocks, H. Aurass, M. Steinmetz, K. G. Strassmeier, M. M. Bisi, R. A. Fallows, P. Gallagher, A. Kerdraon, A. Mackinnon, J. Magdalenic, H. Rucker, J. Anderson, A. Asgekar, I. M. Avruch, M. E. Bell, M. J. Bentum, G. Bernardi, P. Best, L. Bîrzan, A. Bonafede, J. W. Broderick, M. Brüggen, H. R. Butcher, B. Ciardi, A. Corstanje, F. De Gasperin, E. De Geus, Adam DellerAdam Deller, S. Duscha, J. Eislöffel, D. Engels, H. Falcke, R. Fender, C. Ferrari, W. Frieswijk, M. A. Garrett, J. Grießmeier, A. W. Gunst, M. Van Haarlem, T. E. Hassall, G. Heald, J. W.T. Hessels, M. Hoeft, J. Hörandel, A. Horneffer, E. Juette, A. Karastergiou, W. F.A. Klijn, V. I. Kondratiev, M. Kramer, M. Kuniyoshi, G. Kuper, P. Maat, S. Markoff, R. McFadden, D. McKay-Bukowski, J. P. McKean, D. D. Mulcahy, H. Munk, A. Nelles, M. J. Norden, E. Orru, H. Paas, M. Pandey-Pommier, V. N. Pandey, R. Pizzo, A. G. Polatidis, D. Rafferty, W. Reich, H. Röttgering, A. M.M. Scaife, D. J. Schwarz, M. Serylak, J. Sluman, O. Smirnov, B. W. Stappers, M. Tagger, Y. Tang, C. Tasse, S. Ter Veen, S. Thoudam, M. C. Toribio, R. Vermeulen, R. J.Van Weeren, M. W. Wise, O. Wucknitz, S. Yatawatta, P. Zarka, J. A. Zensus
The Sun's activity leads to bursts of radio emission, among other phenomena. An example is type-III radio bursts. They occur frequently and appear as short-lived structures rapidly drifting from high to low frequencies in dynamic radio spectra. They are usually interpreted as signatures of beams of energetic electrons propagating along coronal magnetic field lines. Here we present novel interferometric LOFAR (LOw Frequency ARray) observations of three solar type-III radio bursts and their reverse bursts with high spectral, spatial, and temporal resolution. They are consistent with a propagation of the radio sources along the coronal magnetic field lines with nonuniform speed. Hence, the type-III radio bursts cannot be generated by a monoenergetic electron beam, but by an ensemble of energetic electrons with a spread distribution in velocity and energy. Additionally, the density profile along the propagation path is derived in the corona. It agrees well with three-fold coronal density model by (1961, ApJ, 133, 983).

History

Available versions

PDF (Published version)

ISSN

1432-0746

Journal title

Astronomy and Astrophysics

Volume

611

Article number

article no. A57

Pagination

a57-

Publisher

EDP Sciences

Copyright statement

Reproduced with permission from Astronomy & Astrophysics. Copyright © 2018 ESO.

Language

eng

Usage metrics

    Publications

    Categories

    No categories selected

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC