Time sequence spectroscopy of AW UMa. The 518 nm Mg I triplet region analyzed with Broadening Functions
arXiv:1409.0686 · doi:10.1088/0004-6256/149/2/49
Abstract
High resolution spectroscopic observations of AW UMa, obtained on three consecutive nights with the median time resolution of 2.1 minutes, have been analyzed using the Broadening Functions method in the spectral window Doppler images of the system reveal the presence of vigorous mass motions within the binary system; their presence puts into question the solid-body rotation assumption of the contact binary model. AW UMa appears to be a very tight, semi-detached binary; the mass transfer takes place from the more massive to the less massive component. The primary, a fast-rotating star with V sin i = 181.4+\-2.5 km s^-1, is covered by inhomogeneities: very slowly drifting spots and a dense network of ripples more closely participating in its rotation. The spectral lines of the primary show an additional broadening component (called the "pedestal") which originates either in the equatorial regions which rotate faster than the rest of the star by about 50 km s^-1 or in an external disk-like structure. The secondary component appears to be smaller than predicted by the contact model. The radial velocity field around the secondary is dominated by accretion of matter transferred from (and possibly partly returned to) the primary component. The parameters of the binary are: A sin i = 2.73 +/- 0.11 R_odot and M_1 sin^3 i = 1.29 +/- 0.15 M_odot, M_2 sin^3 i = 0.128 +/- 0.016 M_odot. The mass ratio q_rm sp = M_2/M_1 = 0.099 +/- 0.003, while still the most uncertain among the spectroscopic elements, is substantially different from the previous numerous and mutually consistent photometric investigations which were based on the contact model. It should be studied why photometry and spectroscopy give so very discrepant results and whether AW UMa is an unusual object or that only very high-quality spectroscopy can reveal the true nature of W UMa-type binaries.
Accepted for publication in AJ. 16 figures, Tabs.2 and 3 in ascii. Revisions rel 1st submission: 1st prgs of Sec.4.3 and 6.1 rewritten. Added Fig.5. Added Tab.3 with RV's of primary. Re-determined K1 and final elements
References in corpus (5)
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Tertiary companions to close spectroscopic binaries
- Contact binaries with additional components. III. The adaptive optics detections
- Radial velocity mapping of Paczyński's star AW UMa: Not a contact binary
- A model of AW UMa
Cited by in corpus (8)
- Statistics of 700 individually studied W UMa stars
- New low mass ratio contact binaries in the Catalina Sky Survey
- CoBiToM Project -- I. Contact Binaries Towards Merging
- A Bayesian Analysis of Physical Parameters for 783 Kepler (Near-)Contact Binaries: Extreme-Mass-Ratio Systems and a New Mass Ratio versus Period Lower Limit
- Absolute Magnitude Calibration for W UMa-Type Systems Based on Gaia Data
- Time sequence spectroscopy of Epsilon CrA. The 518 nm Mg I triplet region analyzed with Broadening Functions
- Evolutionary history of four binary blue stragglers from the globular clusters ωCen, M55, 47 Tuc and NGC 6752
- Detailed Investigation of a W UMa Contact Binary with an Ultralow Mass Ratio and a Third-Body as a Potential Merger Candidate