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Monitoring the radio emission of Proxima Centauri

Authors :
Pérez-Torres, Miguel
Gómez, José Francisco
Ortiz, José Luis
Leto, Paolo
Anglada, Guillem
Gómez, José Luis
Rodríguez, Eloy
Trigilio, Corrado
Amado, Pedro J.
Alberdi, Antonio
Anglada-Escudé, Guillem
Osorio, Mayra
Umana, Grazia
Berdiñas, Zaira
López-González, María José
Morales, Nicolás
Rodríguez-López, Cristina
Chibueze, James
Source :
A&A 645, A77 (2021)
Publication Year :
2020

Abstract

We present results from the most comprehensive radio monitoring campaign towards the closest star to our Sun, Proxima Centauri. We report 1.1 to 3.1 GHz observations with the Australian Telescope Compact Array over 18 consecutive days in April 2017. We detect radio emission from Proxima Centauri for most of the observing sessions, which spanned $\sim$1.6 orbital periods of the planet Proxima b. The radio emission is stronger at the low-frequency band, centered around 1.6 GHz, and is consistent with the expected electron-cyclotron frequency for the known star's magnetic field intensity of about 600 Gauss. The 1.6 GHz light curve shows an emission pattern that is consistent with the orbital period of the planet Proxima b around the star Proxima, with its maxima of emission happening near the quadratures. We also observed two short-duration (a few minutes) flares and a long-duration (about three days) burst whose peaks happened close to the quadratures. We find that the frequency, large degree of circular polarization, change of the sign of circular polarization, and intensity of the observed radio emission are all consistent with expectations from electron cyclotron-maser emission arising from sub-Alfv\'enic star-planet interaction. We interpret our radio observations as signatures of interaction between the planet Proxima b and its host star Proxima. We advocate for monitoring other dwarf stars with planets to eventually reveal periodic radio emission due to star-planet interaction, thus opening a new avenue for exoplanet hunting and the study of a new field of exoplanet-star plasma interaction.<br />Comment: 14 pages, 11 figures. Accepted on December 2, 2020 in A&A (main journal), several typos corrected

Details

Database :
arXiv
Journal :
A&A 645, A77 (2021)
Publication Type :
Report
Accession number :
edsarx.2012.02116
Document Type :
Working Paper
Full Text :
https://doi.org/10.1051/0004-6361/202039052