Hot Jupiters from Coplanar High-eccentricity Migration
arXiv:1409.8296 · doi:10.1088/0004-637X/805/1/75
Abstract
We study the possibility that hot Jupiters are formed through the secular gravitational interactions between two planets in eccentric orbits with relatively low mutual inclinations () and friction due to tides raised on the planet by the host star. We term this migration mechanism Coplanar High-eccentricity Migration because, like disk migration, it allows for migration to occur on the same plane in which the planets formed. Coplanar High-eccentricity Migration can operate from the following typical initial configurations: (i) inner planet in a circular orbit and the outer planet with an eccentricity for ; (ii) two eccentric () orbits for . A population synthesis study of hierarchical systems of two giant planets using the observed eccentricity distribution of giant planets shows that Coplanar High-eccentricity Migration produces hot Jupiters with low stellar obliquities (), with a semi-major axis distribution that matches the observations, and at a rate that can account for their observed occurrence. A different mechanism is needed to create large obliquity hot Jupiters, either a different migration channel or a mechanism that tilts the star or the proto-planetary disk. Coplanar High-eccentricity Migration predicts that hot Jupiters should have distant ( AU) and massive (most likely more massive than the hot Jupiter) companions with relatively low mutual inclinations () and moderately high eccentricities ()
17 pages, 9 figures, published in ApJ
References in corpus (17)
- Dynamical Outcomes of Planet-Planet Scattering
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- Suppression of extreme orbital evolution in triple systems with short range forces
- HD147506b: A Super-Massive Planet in an Eccentric Orbit Transiting a Bright Star
- Satellite dynamics on the Laplace surface
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- Five Intermediate-Period Planets from the N2K Sample
- Large eccentricity, low mutual inclination: the three-dimensional architecture of a hierarchical system of giant planets
- Early Excitation of Spin-Orbit Misalignments in Close-in Planetary Systems
- The California Planet Survey IV: A Planet Orbiting the Giant Star HD 145934 and Updates to Seven Systems with Long-Period Planets
- Spin-Orbit angle distribution and the origin of (mis)aligned hot Jupiters
- Lensing and Supernovae: Quantifying The Bias on the Dark Energy Equation of State
- Ongoing growth of the brightest cluster galaxies via major dry mergers in the last ~6 Gyr
- Equilibria in the secular, non-coplanar two-planet problem
- Q in Other Solar Systems
Cited by in corpus (35)
- Kepler-432: a red giant interacting with one of its two long period giant planets
- Planetary engulfment as a trigger for white dwarf pollution
- Chaotic Tides in Migrating Gas Giants: Forming Hot and Transient Warm Jupiters via High-Eccentricity Migration
- Spin-orbit Misalignment as a Driver of the Kepler Dichotomy
- The Habitable-zone Planet Finder Reveals A High Mass and a Low Obliquity for the Young Neptune K2-25b
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- Eccentricity and Spin-Orbit Misalignment in Short-Period Stellar Binaries as a Signpost of Hidden Tertiary Companions
- Formation of Hot Jupiters through Secular Chaos and Dynamical Tides
- Kepler-730: A hot Jupiter system with a close-in, transiting, Earth-sized planet
- KELT-9 b's Asymmetric TESS Transit Caused by Rapid Stellar Rotation and Spin-Orbit Misalignment
- A significant mutual inclination between the planets within the Mensae system
- Chaotic quadruple secular evolution and the production of misaligned exomoons and Warm Jupiters in stellar multiples
- Moderately Eccentric Warm Jupiters from Secular Interactions with Exterior Companions
- Hot Jupiters driven by high-eccentricity migration in globular clusters
- The gravitational interaction between planets on inclined orbits and protoplanetary disks as the origin of primordial spin--orbit misalignments
- Tidal erasure of stellar obliquities constrains the timing of hot Jupiter formation
- TOI-216b and TOI-216c: Two warm, large exoplanets in or slightly wide of the 2:1 orbital resonance
- Gravity-Darkening Analysis of Misaligned Hot Jupiter MASCARA-4 b
- HATS-54b-HATS-58Ab: five new transiting hot Jupiters including one with a possible temperate companion
- NEID Rossiter-McLaughlin Measurement of TOI-1268b: A Young Warm Saturn Aligned with Its Cool Host Star
- Exterior Companions to Hot Jupiters Orbiting Cool Stars are Coplanar
- Orbital alignment of the eccentric warm Jupiter TOI-677 b
- A systematic study about orbit flips of test particles caused by eccentric von Zeipel-Lidov-Kozai effects
- Hints for hidden planetary companions to hot Jupiters in stellar binaries
- A hot mini-Neptune and a temperate, highly eccentric sub-Saturn around the bright K-dwarf TOI-2134
- Quadrupole and octupole order resonances in non-restricted hierarchical planetary systems
- Revisiting the Full Sets of Orbital Parameters for the XO-3 System: No evidence for Temporal Variation of the Spin-Orbit Angle
- Gemini-GRACES high-quality spectra of Kepler evolved stars with transiting planets I. Detailed characterization of multi-planet systems Kepler-278 and Kepler-391
- Possible Outcomes of Coplanar High-eccentricity Migration: Hot Jupiters, Close-in Super-Earths, and Counter-orbiting Planets
- Secular resonance of inner test particles in hierarchical planetary systems
- Production of hot Jupiter candidates from high-eccentricity mechanisms for different initial planetary mass configurations
- The Wanderer: Charting WASP-77A b's Formation and Migration Using a System-Wide Inventory of Carbon and Oxygen Abundances
- TOI-3362b: A Proto-Hot Jupiter Undergoing High-Eccentricity Tidal Migration
- Instability from high-order resonant chains in wide-separation massive planet systems
- Searching for the Grand Tack in Exoplanetary Data