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20212026
most citedRadio Burst from a Stellar Coronal Mass Ejection

12 citations · 28 across the 8 of their papers we have counts for

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astro-ph.SR2025

Occurrence rate of stellar Type II radio bursts from a 100 star-year search for coronal mass ejections

David C. Konijn, Harish K. Vedantham, Cyril Tasse +8

Coronal mass ejections (CMEs) are major drivers of space weather in the Solar System, but their occurrence rate on other stars is unknown. A characteristic (deca-)metric radio burs…

astro-ph.SR202512 cited

Radio Burst from a Stellar Coronal Mass Ejection

J. R. Callingham, C. Tasse, R. Keers +15

Coronal mass ejections (CMEs) are massive expulsions of magnetised plasma from a star, and are the largest contributors to space weather in the Solar System. CMEs are theorized to…

astro-ph.SR20256 cited

Catching the wisps: Stellar mass-loss limits from low-frequency radio observations

Sanne Bloot, Harish K. Vedantham, Robert D. Kavanagh +2

The winds of low-mass stars carry away angular momentum and impact the atmospheres of surrounding planets. Determining the properties of these winds is necessary to understand the…

astro-ph.SR2023

Phenomenology and periodicity of radio emission from the stellar system AU Microscopii

Sanne Bloot, Joseph R. Callingham, Harish K. Vedantham +6

Stellar radio emission can measure a star's magnetic field strength and structure, plasma density and dynamics, and the stellar wind pressure impinging on exoplanet atmospheres. Ho…

astro-ph.SR20219 cited

Radio modelling of the brightest and most luminous non-thermal colliding-wind binary Apep

S. Bloot, J. R. Callingham, B. Marcote

Apep is the brightest and most luminous non-thermal colliding-wind binary by over an order of magnitude. It has been suggested from infrared observations that one of the Wolf-Rayet…