Detection and Characterisation of a Coronal Mass Ejection using Interplanetary Scintillation measurements from the Murchison Widefield Array
arXiv:2303.09134 · doi:10.1029/2022SW003396
Abstract
We have shown previously that the Murchison Widefield Array (MWA), can detect hundreds of Interplanetary Scintillation (IPS) sources simultaneously across a field of view in extent. To test if we can use this capability to track heliospheric structures, we undertook a search of 88 hours of MWA IPS data, and identified an observation likely to have a significant Coronal Mass Ejection (CME) in the field of view. We demonstrate that in a single 5-minute MWA observation we are able to localise and image a CME 33 hours after launch at an elongation of from the Sun. We use IPS observables to constrain the kinematics of the CME, and describe how MWA IPS observations can be used in the future to make a unique contribution to heliospheric modelling efforts.
12 pages, 4 figures. Accepted for publication in "Space Weather" (ISSN:1542-7390)
References in corpus (9)
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- An optimized algorithm for multi-scale wideband deconvolution of radio astronomical images
- Characterisation of the ionosphere above the Murchison Radio Observatory using the Murchison Widefield Array
- Spatial Relationship between Solar Flares and Coronal Mass Ejections
- The challenges of low-frequency radio polarimetry: lessons from the Murchison Widefield Array
- Interplanetary Scintillation with the Murchison Widefield Array I: A sub-arcsecond Survey over 900 square degrees at 79 and 158 MHz
- Validation of Coronal Mass Ejection Arrival-Time Forecasts by Magnetohydrodynamic Simulations based on Interplanetary Scintillation Observations
- First measurement of interplanetary scintillation with the ASKAP radio telescope: implications for space weather
- A measurement of small-scale features using ionospheric scintillation. Comparison with refractive shift measurements