Testing tidal theory for evolved stars by using red-giant binaries observed by Kepler
arXiv:1806.07208 · doi:10.1093/mnrasl/sly114
Abstract
Tidal interaction governs the redistribution of angular momentum in close binary stars and planetary systems and determines the systems evolution towards the possible equilibrium state. Turbulent friction acting on the equilibrium tide in the convective envelope of low-mass stars is known to have a strong impact on this exchange of angular momentum in binaries. Moreover, theoretical modelling in recent literature as well as presented in this paper suggests that the dissipation of the dynamical tide, constituted of tidal inertial waves propagating in the convective envelope, is weak compared to the dissipation of the equilibrium tide during the red-giant phase. This prediction is confirmed when we apply the equilibrium-tide formalism developed by Zahn (1977), Verbunt & Phinney (1995), and Remus, Mathis & Zahn (2012) onto the sample of all known red-giant binaries observed by the NASA Kepler mission. Moreover, the observations are adequately explained by only invoking the equilibrium tide dissipation. Such ensemble analysis also benefits from the seismic characterisation of the oscillating components and surface rotation rates. Through asteroseismology, previous claims of the eccentricity as an evolutionary state diagnostic are discarded. This result is important for our understanding of the evolution of multiple star and planetary systems during advanced stages of stellar evolution.
Letter accepted for publication in MNRAS
References in corpus (25)
- Accurate masses and radii of normal stars: modern results and applications
- Gravity modes as a way to distinguish between hydrogen- and helium-burning red giant stars
- Tidal dissipation in stars and giant planets
- Kepler Eclipsing Binary Stars. VII. The Catalog of Eclipsing Binaries Found in the Entire Kepler Data-Set
- Tidal dissipation in rotating solar-type stars
- Revised Stellar Properties of Kepler Targets for the Q1-17 (DR25) Transit Detection Run
- The connection between stellar granulation and oscillation as seen by the Kepler mission
- Rotation and magnetism of Kepler pulsating solar-like stars. Towards asteroseismically calibrated age-rotation relations
- A Class of Eccentric Binaries with Dynamic Tidal Distortions Discovered with Kepler
- Testing the asteroseismic scaling relations for Red Giants with Eclipsing Binaries Observed by Kepler
- Tides in rotating barotropic fluid bodies: the contribution of inertial waves and the role of internal structure
- Pulsating red giant stars in eccentric binary systems discovered from Kepler space-based photometry
- Surface rotation of Kepler red giant stars
- Surface Activity and Oscillation Amplitudes of Red Giants in Eclipsing Binaries
- KIC 8410637: a 408-day period eclipsing binary containing a pulsating red giant
- Internal rotation of the red-giant star KIC 4448777 by means of asteroseismic inversion
- The equilibrium tide in stars and giant planets: I - the coplanar case
- The variation of tidal dissipation in the convective envelope of low-mass stars along their evolution
- On internal wave breaking and tidal dissipation near the centre of a solar-type star
- Tidal dissipation in rotating low-mass stars and implications for the orbital evolution of close-in planets I. From the PMS to the RGB at solar metallicity
- The Solar-Stellar Connection
- KIC 9246715: The Double Red Giant Eclipsing Binary With Odd Oscillations
- The fate of close-in planets: tidal or magnetic migration?
- The impact of rotation on turbulent tidal friction in stellar and planetary convective regions
- Seismic probing of the first dredge-up event through the eccentric red-giant & red-giant spectroscopic binary KIC9163796
Cited by in corpus (14)
- Tidal dissipation in evolving low-mass and solar-type stars with predictions for planetary orbital decay
- Efficiency of tidal dissipation in slowly rotating fully convective stars or planets
- On the interaction between fast tides and convection
- Constraining Tidal Quality Factor using Spin Period in Eclipsing Binaries
- Tidal Dissipation in Evolved Low and Intermediate Mass Stars
- BiPoS1 -- a computer programme for the dynamical processing of the initial binary star population
- Magnetic activity of red giants: correlation between the amplitude of solar-like oscillations and chromospheric indicators
- The Value-Added Catalog of ASAS-SN Eclipsing Binaries II: Properties of Extra-Physics Systems
- Testing tidal theory using Gaia binaries: the red giant branch
- Searching for orbital decay in a heartbeat star system KIC 3766353
- Weighing stars from birth to death: mass determination methods across the HRD
- Tidally driven inertial waves enhance eccentricity damping and spin evolution in planets and stars
- HAYDN -- High-precision AsteroseismologY of DeNse stellar fields (ESA Voyage 2050 White Paper)
- The fate of Earth during the Sun's giant phases: New constraints from ab initio tidal modelling and AGB mass loss