Young, active radio stars in the AB Doradus moving group
arXiv:1703.08877 · doi:10.1051/0004-6361/201629899
Abstract
Context. Precise determination of stellar masses is necessary to test the validity of pre-main-sequence (PMS) stellar evolutionary models, whose predictions are in disagreement with measurements for masses below 1.2 Msun. To improve such a test, and based on our previous studies, we selected the AB Doradus moving group (AB Dor-MG) as the best-suited association on which to apply radio-based high-precision astrometric techniques to study binary systems. Aims. We seek to determine precise estimates of the masses of a set of stars belonging to the AB Dor-MG using radio and infrared observations. Methods. We observed in phase-reference mode with the Very Large Array (VLA) at 5 GHz and with the European VLBI Network (EVN) at 8.4 GHz the stars HD 160934, EK Dra, PW And, and LO Peg. We also observed some of these stars with the near-infrared CCD AstraLux camera at the Calar Alto observatory to complement the radio observations. Results. We determine model-independent dynamical masses of both components of the star HD 160934, A and c, which are 0.70+/-0.07 Msun and 0.45+/-0.04 Msun , respectively. We revised the orbital parameters of EK Dra and we determine a sum of the masses of the system of 1.38+/-0.08 Msun. We also explored the binarity of the stars LO Peg and PW And. Conclusions. We found observational evidence that PMS evolutionary models underpredict the mass of PMS stars by 10%-40%, as previously reported by other authors. We also inferred that the origin of the radio emission must be similar in all observed stars, that is, extreme magnetic activity of the stellar corona that triggers gyrosynchrotron emission from non-thermal, accelerated electrons.
15 pages, 19 figures, accepted for publication in A&A
References in corpus (11)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- An Optical Spectroscopic Study of T Tauri Stars. I. Photospheric Properties
- Evolution of low-mass star and brown dwarf eclipsing binaries
- The Gemini Deep Planet Survey -- GDPS
- The nearest young moving groups
- Older and Colder: The impact of starspots on pre-main sequence stellar evolution
- Reevaluating the Mass-Radius Relation for Low-Mass, Main Sequence Stars
- Magnetic Inhibition of Convection and the Fundamental Properties of Low-Mass Stars. II. Fully Convective Main Sequence Stars
- Improved age constraints for the AB Dor quadruple system - The binary nature of AB Dor B
- Dynamical masses of the low-mass stellar binary ABDoradusB
- Doppler imaging of the young late-type star LO Pegasi (BD +22 4409) in September 2003