Gem: a hierarchical triple system with an outer Be star
arXiv:2105.13437 · doi:10.3847/1538-4357/ac062c
Abstract
Time series of spectroscopic, speckle-interferometric, and optical long-baseline-interferometric observations confirm that Gem is a hierarchical triple system. It consists of an inner binary composed of two B-type stars and an outer classical Be star. Several photospheric spectral lines of the inner components were disentangled, revealing two stars with very different rotational broadening (260 and 140 kms, respectively), while the photospheric lines of the Be star remain undetected. From the combined spectroscopic and astrometric orbital solution it is not possible to unambiguously cross-identify the inner astrometric components with the spectroscopic components. In the preferred solution based on modeling of the disentangled line profiles, the inner binary is composed of two stars with nearly identical masses of 3.3 M and the more rapidly rotating star is the fainter one. These two stars are in a marginally elliptical orbit ( = 0.06) about each other with a period of 53.8 d. The third star also has a mass of 3.3 M and follows a more eccentric ( = 0.24) orbit with a period of 19.1 yr. The two orbits are co-directional and, at inclinations of 79 and 76 of the inner and the outer orbit, respectively, about coplanar. No astrometric or spectroscopic evidence could be found that the Be star itself is double. The system appears dynamically stable and not subject to eccentric Lidov-Kozai oscillations. After disentangling, the spectra of the components of the inner binary do not exhibit peculiarities that would be indicative of past interactions. Motivations for a wide range of follow-up studies are suggested.
accepted to ApJ
References in corpus (12)
- Interferometric Observations of Rapidly Rotating Stars
- On the formation of Be stars through binary interaction
- Instability strips of SPB and beta Cephei stars: the effect of the updated OP opacities and of the metal mixture
- A naked-eye triple system with a nonaccreting black hole in the inner binary
- Investigating the lack of main-sequence companions to massive Be stars
- Spectral and spatial imaging of the Be+sdO binary phi Persei
- TESS observations of Be stars: a new interpretation
- Observations of Binary Stars with the Differential Speckle Survey Instrument. IX. Observations of Known and Suspected Binaries, and a Partial Survey of Be Stars
- Phase-dependent study of near-infrared disk emission lines in LB-1
- Stellar parameters of Be stars observed with X-shooter
- ARMADA I: Triple Companions Detected in B-Type Binaries alpha Del and nu Gem
- The H-alpha Emission Line Variations of HR 6819