The Radiowave Hunt for Young Stellar Object Emission and Demographics (RADIOHEAD): A Radio Luminosity${-}$Spectral Type Dependence in Taurus${-}$Auriga YSOs
Ramisa Akther Rahman, Joshua Bennett Lovell, Eric W. Koch, David J., Wilner, Sean M. Andrews, Kristina Monsch, Dan Ha

TL;DR
This study uses VLASS data to analyze radio emissions from Taurus-Auriga young stellar objects, revealing a strong dependence on spectral type and YSO class, with early-type stars showing higher detection rates and luminosities.
Contribution
It provides the first comprehensive radio detection survey of Taurus-Auriga YSOs, establishing a spectral type and YSO class dependence in radio emission detectability and luminosity.
Findings
Higher radio detection rates in early-type YSOs
Significant luminosity enhancement in early-type YSOs
25% of detected sources show variability
Abstract
We measure the radio continuum fluxes at the locations of all Gaiaconfirmed members of TaurusAuriga using Karl G. Jansky Very Large Array Sky Survey data (VLASS; 24 GHz, Jy, resolution) spanning 3 VLASS epochs (2019, 2021, and 2023). We present 35 detections coincident with young TaurusAuriga stars (29 in individual VLASS images, 6 via stacking). We find a strong dependence on spectral type, wherein the fractional detection rate of radio emission coincident with early-type young stellar objects (YSOs) is systematically higher than late-type YSOs, ranging from 25% 13% for BF YSOs, 21% 11% for G YSOs, 18.4% 6.3% for K0K4 YSOs, 15.5% 5.4% for K5K9 YSOs, 7.0% 2.7% for M0M2 YSOs, 2.3% 0.9% for M3M6 YSOs, and 1.9% 1.9% for YSOs with SpTs later than M7. We…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astro and Planetary Science
