Dynamical Tides in Compact White Dwarf Binaries: Helium Core White Dwarfs, Tidal Heating, and Observational Signatures
arXiv:1211.0624 · doi:10.1093/mnras/sts606
Abstract
Tidal dissipation in compact white dwarf (WD) binary systems significantly influences the physical conditions (such as surface temperature and rotation rate) of the WDs prior to mass transfer or merger. In these systems, the dominant tidal effects involve the excitation of gravity waves and their dissipation in the outer envelope of the star. We calculate the amplitude of tidally excited gravity waves in low-mass (0.3M_\odot) helium-core (He) WDs as a function of the tidal forcing frequency ω. Like carbon-oxygen (CO) WDs studied in our previous paper, we find that the dimensionless tidal torque F(ω) (inversely proportional to the effective tidal quality factor) has an erratic dependence on ω. On average, F(ω) scales approximately as ω^6, and is several orders of magnitude smaller for He WDs than for CO WDs. We find that tidal torques can begin to synchronize the WD rotation when the orbital period is less than about a hour, although a nearly constant asynchronization is maintained even at small periods. We examine where the tidally excited gravity waves experience non-linear breaking or resonant absorption at a critical layer, allowing us to estimate the location and magnitude of tidal heating in the WD envelope. We then incorporate tidal heating in the MESA stellar evolution code, calculating the physical conditions of the WD as a function of orbital period for different WD models. We find that tidal heating makes a significant contribution to the WD luminosity for short-period (~10 min) systems such as SDSS J0651+2844. We also find that for WDs containing a hydrogen envelope, tidal heating can trigger runaway hydrogen shell burning, leading to a nova-like event before the onset of mass transfer.
23 pages, 12 figures, accepted to MNRAS
References in corpus (5)
Cited by in corpus (44)
- The Evolution of Compact Binary Star Systems
- General relativistic orbital decay in a seven-minute-orbital-period eclipsing binary system
- The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range
- A systematic search of Zwicky Transient Facility data for ultracompact binary LISA-detectable gravitational-wave sources
- Mass transfer in white dwarf-neutron star binaries
- The Post-Merger Magnetized Evolution of White Dwarf Binaries: The Double-Degenerate Channel of Sub-Chandrasekhar Type Ia Supernovae and the Formation of Magnetized White Dwarfs
- Orbital Decay in a 20 Minute Orbital Period Detached Binary with a Hydrogen Poor Low Mass White Dwarf
- White dwarf binaries suggest a common envelope efficiency
- The stability of tidally deformed neutron stars to three- and four-mode coupling
- Dynamical Tides in Compact White Dwarf Binaries: Influence of Rotation
- Radius constraints from high-speed photometry of 20 low-mass white dwarf binaries
- Properties of the Eclipsing Double-White Dwarf Binary NLTT 11748
- Tidal circularization of gaseous planets orbiting white dwarfs
- Nonlinear dynamical tides in white dwarf binaries
- A 1201 s Orbital Period Detached Binary: the First Double Helium Core White Dwarf LISA Verification Binary
- Orbital relaxation and excitation of planets tidally interacting with white dwarfs
- Masses of White Dwarf Binary Companions to Type Ia Supernovae Measured from Runaway Velocities
- Measuring tides and binary parameters from gravitational wave data and eclipsing timings of detached white dwarf binaries
- Inferring the Presence of Tides in Detached White Dwarf Binaries
- Influence of a mass transfer stability criterion on double white dwarf populations
- Tidal Disruption Event Disks around Supermassive Black Holes: Disk Warp and Inclination Evolution
- Constraining white dwarf viscosity through tidal heating in detached binary systems
- Orbital decay in an accreting and eclipsing 13.7 minute orbital period binary with a luminous donor
- Possible Formation Scenarios of ZTF J153932.16+502738.8-A Gravitational Source Close to the Peak of LISA's Sensitivity
- The Discovery of Two LISA Sources within 0.5 kpc
- Physics of Tidal Dissipation in Early-Type Stars and White Dwarfs: Hydrodynamical Simulations of Internal Gravity Wave Breaking in Stellar Envelopes
- Tidal Wave Breaking in the Eccentric Lead-In to Mass Transfer and Common Envelope Phases
- Introducing CAFein, a New Computational Tool for Stellar Pulsations and Dynamic Tides
- Tidal Dissipation in Evolved Low and Intermediate Mass Stars
- Photometric White Dwarf Rotation
- Impact of dipolar magnetic fields on gravitational wave strain by galactic binaries
- Discovery, TESS Characterization, and Modeling of Pulsations in the Extremely Low Mass White Dwarf GD 278
- Probing the efficiency of tidal synchronization in outspiralling double white dwarf binaries with LISA
- Tidally excited oscillations in hot white dwarfs
- Polygram Stars: Resonant Tidal Excitation of Fundamental Oscillation Modes in Asynchronous Stellar Coalescence
- Multi-band light curve analysis of the 40.5-minute period eclipsing double-degenerate binary SDSS J082239.54304857.19
- On obliquely magnetized and differentially rotating stars
- Post-Keplerian waveform model for binary compact object as sources of space-based gravitational wave detector and its implications
- Thermal Tides in Rotating Hot Jupiters
- Ultrashort-period WD binaries are not undergoing strong tidal heating
- Possible tidal dissipation in millisecond pulsar binaries
- Extreme mass loss during common envelope evolution: the origin of the double low-mass white dwarf system J2102--4145
- LISA Galactic Binaries in the Roman Galactic Bulge Time-Domain Survey
- Tidal heating in detached double white dwarf binaries