Dynamical resonance locking in tidally interacting binary systems
arXiv:1312.4966 · doi:10.1093/mnras/stu1366
Abstract
We examine the dynamics of resonance locking in detached, tidally interacting binary systems. In a resonance lock, a given stellar or planetary mode is trapped in a highly resonant state for an extended period of time, during which the spin and orbital frequencies vary in concert to maintain the resonance. This phenomenon is qualitatively similar to resonance capture in planetary dynamics. We show that resonance locks can accelerate the course of tidal evolution in eccentric systems and also efficiently couple spin and orbital evolution in circular binaries. Previous analyses of resonance locking have not treated the mode amplitude as a fully dynamical variable, but rather assumed the adiabatic (i.e. Lorentzian) approximation valid only in the limit of relatively strong mode damping. We relax this approximation, analytically derive conditions under which the fixed point associated with resonance locking is stable, and further check these analytic results using numerical integrations of the coupled mode, spin, and orbital evolution equations. These show that resonance locking can sometimes take the form of complex limit cycles or even chaotic trajectories. We provide simple analytic formulae that define the binary and mode parameter regimes in which resonance locks of some kind occur (stable, limit cycle, or chaotic). We briefly discuss the astrophysical implications of our results for white dwarf and neutron star binaries as well as eccentric stellar binaries.
16 pages, 11 figures
References in corpus (2)
Cited by in corpus (27)
- Resonance locking as the source of rapid tidal migration in the Jupiter and Saturn moon systems
- Resonance locking in giant planets indicated by the rapid orbital expansion of Titan
- Heartbeat Stars, Tidally Excited Oscillations, and Resonance Locking
- Tidal Synchronization and Differential Rotation of Kepler Eclipsing Binaries
- Tidal Dissipation in WASP-12
- Orbital Decay of Short-Period Exoplanets via Tidal Resonance Locking
- Rotation Period Evolution in Low-Mass Binary Stars: The Impact of Tidal Torques and Magnetic Braking
- The Most Massive Heartbeat: An In-depth Analysis of ι Orionis
- KIC 8164262: a Heartbeat Star Showing Tidally Induced Pulsations with Resonant Locking
- The effect of tides on near-core rotation: analysis of 35 Kepler Doradus stars in eclipsing and spectroscopic binaries
- Tidal Circularization of Binaries by Resonance Locking I: The Importance of the Pre-Main-Sequence
- Accelerated Tidal Circularization Via Resonance Locking in KIC 8164262
- Masses of White Dwarf Binary Companions to Type Ia Supernovae Measured from Runaway Velocities
- Long-term evolution of double white dwarf binaries accreting through direct impact
- Long-term evolution of the Galilean satellites: the capture of Callisto into resonance
- Tidally perturbed g-mode pulsations in a sample of close eclipsing binaries
- Constraining Tidal Quality Factor using Spin Period in Eclipsing Binaries
- Discrepant Approaches to Modeling Stellar Tides, and the Blurring of Pseudosynchronization
- Probing the efficiency of tidal synchronization in outspiralling double white dwarf binaries with LISA
- V456 Cyg: An eclipsing binary with tidally perturbed g-mode pulsations
- Tidally excited oscillations in hot white dwarfs
- Non-linear Three-mode Coupling of Gravity Modes in Rotating Slowly Pulsating B Stars: Stationary Solutions and Modeling Potential
- Observability of dynamical tides in merging eccentric neutron star binaries
- On the resonant detonation of sub-Chandrasekhar mass white dwarfs during binary inspiral
- The coevolution of migrating planets and their pulsating stars through episodic resonance locking
- Detailed Characterization of Heartbeat Stars and their Tidally Excited Oscillations
- Evolving Low- and Intermediate-Mass Binaries: Departures from Classical Theory