EGU23-12283
https://doi.org/10.5194/egusphere-egu23-12283
EGU General Assembly 2023
© Author(s) 2023. This work is distributed under
the Creative Commons Attribution 4.0 License.

Separating fundamental and harmonic sources in LOFAR solar type III radio burst images

Christian Vocks1, Pietro Zucca2, Mario Bisi3, Bartosz Dabrowski4, Diana Morosan5, Peter Gallagher6, Andrzej Krankowski4, Jasmina Magdalenic7, Gottfried Mann1, Christophe Marque7, Hanna Rothkaehl8, and Barbara Matyjasiak8
Christian Vocks et al.
  • 1Leibniz-Institut für Astrophysik Potsdam, Potsdam, Germany
  • 2ASTRON, Dwingeloo, Netherlands
  • 3RAL Space, UK
  • 4University of Warmia and Mazury, Olsztyn, Poland
  • 5University of Helsinki, Finland
  • 6DIAS, Dublin, Ireland
  • 7Royal Observatory of Belgium, Brussels, Belgium
  • 8PAN, Warsaw, Poland

LOFAR low band interferometric images of type III solar radio bursts during an M class flare on 7 September 2017 show distinct sources with variations in their positions and intermittent dual source structures. We identify these as fundamental and harmonic emission, with the one or other being dominant at times. The data show that transport effects due to refraction and scattering play a significant role, both in source separation and drift of their apparent positions. We present a method of automatically separating fundamental and harmonic contributions that allows for obtaining separate lightcurves. Comparing the lightcurves of fundamental and harmonic pairs, e.g. 35 MHz and 70 MHz, enables studies of radio wave propagation in the solar corona. Harmonic sources at the lowest observable frequencies are relevant for the transition into the solar wind, and for joint observing campaigns with Parker Solar Probe and Solar Orbiter that are currently investigating the inner heliosphere.

How to cite: Vocks, C., Zucca, P., Bisi, M., Dabrowski, B., Morosan, D., Gallagher, P., Krankowski, A., Magdalenic, J., Mann, G., Marque, C., Rothkaehl, H., and Matyjasiak, B.: Separating fundamental and harmonic sources in LOFAR solar type III radio burst images, EGU General Assembly 2023, Vienna, Austria, 24–28 Apr 2023, EGU23-12283, https://doi.org/10.5194/egusphere-egu23-12283, 2023.