Tides in asynchronous binary systems
arXiv:astro-ph/0610563 · doi:10.1051/0004-6361:20065776
Abstract
Stellar oscillations are excited in non-synchronously rotating stars in binary systems due to the tidal forces. Tangential components of the tides can drive a shear flow which behaves as a differentially forced rotating structure in a stratified outer medium. In this paper we show that our single-layer approximation for the calculation of the forced oscillations yields results that are consistent with the predictions for the synchronization timescales in circular orbits. In addition, calibrating our model results to fit Zahn's relationship between synchronization timescales and orbital separation, we are able to constrain the value of the kinematical viscosity parameter. For the 4Mo+5Mo binary modeled in this paper, the kinematical viscosity is in the range 0.0015 -- 0.0043 Ro^2/d for orbital periods in the range 2.5 -- 25 d. Furthermore, the energy dissipation rate due to the shear flow is found to decrease by ~2 orders of magnitude as synchronization is approached, implying that binary systems may approach synchronization relatively quickly but that it takes a much longer timescale to actually attain this condition. Our model can be used to calculate the energy dissipation rates throughout the orbital cycle for arbitrary values of eccentricity and stellar rotational velocity. We suggest that the asymmetric distribution of energy dissipation over the stellar surface may lead to the appearance of localized regions of enhanced surface activity.
9 pages, 5 figures
References in corpus (3)
Cited by in corpus (18)
- Type Ib/c supernovae in binary systems I. Evolution and properties of the progenitor stars
- Rotational mixing in massive binaries: detached short-period systems
- The spin of the second-born black hole in coalescing binary black holes
- Gamma-Ray Bursts from tidally spun-up Wolf-Rayet stars?
- Companion stars of Type Ia supernovae and hypervelocity stars
- Implications of the low binary black hole aligned spins observed by LIGO
- Close binary evolution I. The tidally induced shear mixing in rotating binaries
- Eccentric binaries: Tidal flows and periastron events
- Spectral modelling of massive binary systems
- Evaluating chemically homogeneous evolution in stellar binaries: Electromagnetic implications -- Ionizing photons, SLSN-I, GRB, Ic-BL
- Tidal effects on the radial velocity curve of HD77581 (Vela X-1)
- Induced differential rotation and mixing in asynchronous binary stars
- Spectral modelling of the Alpha Virginis (Spica) binary system
- Using Shell Models to Investigate Clumping in the WN4 Star HD 50896
- Investigating the superorbital modulations in 4U 1909+07, IGR J16418-4532 and IGR J16479-4514 with Swift XRT, BAT and NuSTAR observations
- An Argument for Weakly-Magnetized, Slowly-Rotating Progenitors of Long Gamma-Ray Bursts
- Structure and evolution of a tidally heated star
- Inactive longitude and superflare in the active single-lined pre-main sequence binary V2279 Cyg