English

Tracking solar radio bursts using Bayesian multilateration

Solar and Stellar Astrophysics 2024-02-14 v1 Space Physics

Abstract

Solar radio bursts (SRBs), are emitted by electrons propagating through the corona and interplanetary space. Tracking such bursts is key to understanding the properties of accelerated electrons and radio wave propagation as well as the local plasma environment that they propagate through. Here, we present a novel multilateration algorithm called BayEsian LocaLisation Algorithm (BELLA). In addition, apparent SRB positions from BELLA are compared with comparable localisation methods and the predictions of solar wind models. BELLA uses Bayesian inference to create probabilistic distributions of source positions and their uncertainties. This facilitates the estimation of algorithmic, instrumental, and physical uncertainties in a quantitative manner. We validated BELLA using simulations and a Type III SRB observed by STEREO A/B and Wind. BELLA tracked the Type III source from \sim 10--150 RsunR_{sun} (2-0.15 MHz) along a spiral trajectory. This allowed for an estimate of an apparent solar wind speed of vswv_{sw} \sim 400 km s1^{-1} and a source longitude of ϕ0\phi_0 \sim 30deg. We compared these results with well-established methods of positioning: Goniopolarimetric (GP), analytical time-difference-of-arrival (TDOA), and Solar radio burst Electron Motion Tracker (SEMP). We found them to be in agreement with the results obtained by BELLA. Additionally, the results aligned with solar wind properties assimilated by the Heliospheric Upwind Extrapolation with time dependence (HUXt) model. We have validated BELLA and used it to identify apparent source positions as well as velocities and densities of the solar wind. Furthermore, we identified higher than expected electron densities, suggesting that the true emission sources were at lower altitudes than those identified by BELLA, an effect that may be due to appreciable scattering of electromagnetic waves by electrons in interplanetary space.

Keywords

Cite

@article{arxiv.2402.08590,
  title  = {Tracking solar radio bursts using Bayesian multilateration},
  author = {L. A. Cañizares and S. T. Badman and S. A. Maloney and M. J. Owens and D. M. Weigt and E. P. Carley and P. T. Gallagher},
  journal= {arXiv preprint arXiv:2402.08590},
  year   = {2024}
}

Comments

13 pages, 12 figures, in press, accepted by Astronomy and Astrophysics for publication

R2 v1 2026-06-28T14:47:31.953Z