The Evolution of Planet-Disk Systems That Are Mildly Inclined to the Orbit of a Binary Companion
arXiv:1512.02141 · doi:10.3847/0004-637X/817/1/30
Abstract
We determine the evolution of a giant planet-disk system that orbits a member of a binary star system and is mildly inclined with respect to the binary orbital plane. The planet orbit and disk are initially mutually coplanar. We analyze the evolution of the planet and the disk by analytic means and hydrodynamic simulations. We generally find that the planet and the disk do not remain coplanar unless the disk mass is very large or the gap that separates the planet from the disk is very small. The relative planet-disk tilt undergoes secular oscillations whose initial amplitudes are typically of order the initial disk tilt relative to the binary orbital plane for disk masses ~1% of the binary mass or less. The effects of a secular resonance and the disk tilt decay enhance the planet-disk misalignment. The secular resonance plays an important role for disk masses greater than the planet mass. At later times, the accretion of disk gas by the planet causes its orbit to evolve towards alignment, if the disk mass is sufficiently large. The results have several implications for the evolution of massive planets in binary systems.
Accepted for publication in ApJ
References in corpus (13)
- The Occurrence and Architecture of Exoplanetary Systems
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Smoothed Particle Hydrodynamics and Magnetohydrodynamics
- The Kozai-Lidov Mechanism in Hydrodynamical Disks
- Warp diffusion in accretion discs: a numerical investigation
- Giant Outbursts in Be/X-ray Binaries
- Misaligned Protoplanetary Disks in a Young Binary System
- Tidal Torques on Misaligned Disks in Binary Systems
- ALMA observations of a high-density core in Taurus: dynamical gas interaction at the possible site of a multiple star formation
- Asteroseismic inference on the spin-orbit misalignment and stellar parameters of HAT-P-7
- The Kozai-Lidov Mechanism in Hydrodynamical Disks. II. Effects of binary and disk parameters
- ALMA observations of a misaligned binary protoplanetary disk system in Orion
- Evolution of a disc-planet system with a binary companion on an inclined orbit
Cited by in corpus (34)
- Shadows and spirals in the protoplanetary disk HD 100453
- Stellar obliquities in exoplanetary systems
- Signatures of broken protoplanetary discs in scattered light and in sub-millimetre observations
- Shadows and asymmetries in the T Tauri disk HD 143006: Evidence for a misaligned inner disk
- Inclined Massive Planets in a Protoplanetary Disc: Gap Opening, Disc Breaking, and Observational Signatures
- Planet-disc evolution and the formation of Kozai-Lidov planets
- Variable Outer Disk Shadowing Around the Dipper Star RX J1604.3-2130
- On the Cosmological Evolution of Long Gamma-ray Burst Properties
- Warping a protoplanetary disc with a planet on an inclined orbit
- Planet Formation in Disks with Inclined Binary Companions: Can Primordial Spin-Orbit Misalignment be Produced?
- Determining the recurrence timescale of long-lasting YSO outbursts
- Polar alignment of a protoplanetary disc around an eccentric binary II: Effect of binary and disc parameters
- Orbital dynamics of circumbinary planets
- Polar alignment of a protoplanetary disc around an eccentric binary III: Effect of disc mass
- Orbital Architectures of Planet-Hosting Binaries II. Low Mutual Inclinations Between Planetary and Stellar Orbits
- Generating large misalignments in gapped and binary discs
- Polar planets around highly eccentric binaries are the most stable
- Misaligned accretion disc formation via Kozai-Lidov oscillations
- GW Ori: circumtriple rings and planets
- Secular transport during disk dispersal: the case of Kepler-419
- Spirals, shadows & precession in HD 100453 -- II. The hidden companion
- The eclipse of the V773 Tau B circumbinary disk
- Orbital alignment of circumbinary planets that form in misaligned circumbinary discs: the case of Kepler-413b
- Multi-planet disc interactions in binary systems
- Polar alignment of a massive retrograde circumbinary disc around an eccentric binary
- Orbital dynamics of two circumbinary planets around misaligned eccentric binaries
- Misalignment of terrestrial circumbinary planets as an indicator of their formation mechanism
- SUBARU Near-Infrared Imaging Polarimetry of Misaligned Disks Around The SR24 Hierarchical Triple System
- Orbital stability of two circumbinary planets around misaligned eccentric binaries
- Resonance capture and long-term evolution of planets in binary star systems
- Generation of inclined protoplanetary discs and misaligned planets through mass accretion I: Coplanar secondary discs
- Dynamical Architectures of S-type Transiting Planets in Binaries II: A Dichotomy in Orbital Alignment of Small Planets in Close Binary Systems
- Evolution of a migrating giant planet in the presence of an inclined binary companion
- Planetary migration in precessing disks for S-type wide binaries