Dynamical Tides in Highly Eccentric Binaries: Chaos, Dissipation and Quasi-Steady State
arXiv:1708.09392 · doi:10.1093/mnras/sty225
Abstract
Highly eccentric binary systems appear in many astrophysical contexts, ranging from tidal capture in dense star clusters, precursors of stellar disruption by massive black holes, to high-eccentricity migration of giant planets. In a highly eccentric binary, the tidal potential of one body can excite oscillatory modes in the other during a pericenter passage, resulting in energy exchange between the modes and the binary orbit. These modes exhibit one of three behaviors over multiple passages: low-amplitude oscillations, large amplitude oscillations corresponding to a resonance between the orbital frequency and the mode frequency, and chaotic growth. We study these phenomena with an iterative map, fully exploring how the mode evolution depends on the pericenter distance and other parameters. In addition, we show that the dissipation of mode energy results in a quasi-steady state, with gradual orbital decay punctuated by resonances, even in systems where the mode amplitude would initially grow stochastically. A newly captured star around a black hole can experience significant orbital decay and heating due to the chaotic growth of the mode amplitude and dissipation. A giant planet pushed into a high-eccentricity orbit may experience a similar effect and become a hot or warm Jupiter.
16 pages, 16 figures, accepted for publication in MNRAS
References in corpus (7)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Pre-Supernova Outbursts via Wave Heating in Massive Stars I: Red Supergiants
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- Illuminating Massive Black Holes With White Dwarfs: Orbital Dynamics and High Energy Transients from Tidal Interactions
- Resonant Tidal Excitations of Inertial Modes in Coalescing Neutron Star Binaries
- Moderately Eccentric Warm Jupiters from Secular Interactions with Exterior Companions
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