Formation of Ultra-Short-Period Planets by Obliquity-Driven Tidal Runaway
arXiv:2010.15087 · doi:10.3847/1538-4357/abc4e5
Abstract
Small, rocky planets have been found orbiting in extreme proximity to their host stars, sometimes down to only stellar radii. These ultra-short-period planets (USPs) likely did not form in their present-day orbits, but rather migrated from larger initial separations. While tides are the probable cause of this migration, the tidal source has remained uncertain. Here we introduce planetary obliquity tides as a natural pathway for the production of USPs within close-in multi-planet systems. The crucial idea is that tidal dissipation generally forces planetary spin vectors to equilibrium configurations called "Cassini states", in which the planetary obliquities (axial tilts) are non-zero. In these cases, sustained tidal dissipation and inward orbital migration are inevitable. Migration then increases the obliquity and strengthens the tides, creating a positive feedback loop. Thus, if a planet's initial semi-major axis is small enough ( AU), it can experience runaway orbital decay, which is stalled at ultra-short orbital periods when the forced obliquity reaches very high values () and becomes unstable. We use secular dynamics to outline the parameter space in which the innermost member of a prototypical Kepler multiple-planet system can become a USP. We find that these conditions are consistent with many observed features of USPs, such as period ratios, mutual inclinations, and occurrence rate trends with stellar type. Future detections of stellar obliquities and close-in companions, together with theoretical explorations of the potential for chaotic obliquity dynamics, can help constrain the prevalence of this mechanism.
24 pages, 11 figures. Accepted to ApJ
References in corpus (27)
- KEPLER's First Rocky Planet: Kepler-10b
- Radial velocity planets de-aliased. A new, short period for Super-Earth 55 Cnc e
- A Study of the Shortest-Period Planets Found With Kepler
- Exoplanet Orbital Eccentricities Derived From LAMOST-Kepler Analysis
- Satellite dynamics on the Laplace surface
- Kepler Multi-Planet Systems Exhibit Unexpected Intra-system Uniformity in Mass and Radius
- Forward and Inverse Modeling of the Emission and Transmission Spectrum of GJ 436b: Investigating Metal Enrichment, Tidal Heating, and Clouds
- A Dynamical Analysis of the Kepler-80 System of Five Transiting Planets
- Tidal dissipation within hot Jupiters: a new appraisal
- Predicting the long-term stability of compact multiplanet systems
- Obliquity-Driven Sculpting of Exoplanetary Systems
- Deformation and tidal evolution of close-in planets and satellites using a Maxwell viscoelastic rheology
- Tidally-Induced Radius Inflation of Sub-Neptunes
- Spin-orbit Misalignment as a Driver of the Kepler Dichotomy
- CKS VIII: Eccentricities of Kepler Planets and Tentative Evidence of a High Metallicity Preference for Small Eccentric Planets
- From Hot Jupiters to Super-Earths via Roche Lobe Overflow
- Tidal Inflation Reconciles Low-Density Sub-Saturns with Core Accretion
- On the Spin-axis Dynamics of a Moonless Earth
- Excitation of Planetary Obliquities Through Planet-Disk Interactions
- Secular spin-axis dynamics of exoplanets
- Ultra-short-period Planets are Stable Against Tidal Inspiral
- A population of planetary systems characterized by short-period, Earth-sized planets
- The Origin of Systems of Tightly Packed Inner Planets with Misaligned, Ultra-Short-Period Companions
- Mutual Inclination Excitation by Stellar Oblateness
- Stellar Oblateness versus Distant Giants in Exciting Kepler Planet Mutual Inclinations
- Stellar and planetary Cassini states
- On the origin of dynamically isolated hot Earths
Cited by in corpus (37)
- Orbital Decay of Short-Period Exoplanets via Tidal Resonance Locking
- TOI-2076 and TOI-1807: Two young, comoving planetary systems within 50 pc identified by TESS that are ideal candidates for further follow-up
- TKS X: Confirmation of TOI-1444b and a Comparative Analysis of the Ultra-short-period Planets with Hot Neptunes
- Self-Consistent Spin, Tidal and Dynamical Equations of Motion in the REBOUNDx Framework
- Company for the ultra-high density, ultra-short period sub-Earth GJ 367 b: discovery of two additional low-mass planets at 11.5 and 34 days
- Dynamics of Colombo's Top: Tidal Dissipation and Resonance Capture, With Applications to Oblique Super-Earths, Ultra-Short-Period Planets and Inspiraling Hot Jupiters
- A low-eccentricity migration pathway for a 13-h-period Earth analogue in a four-planet system
- Tidal migration of hot Jupiters: introducing the impact of gravity wave dissipation
- Resonant and Ultra-short-period Planet Systems are at Opposite Ends of the Exoplanet Age Distribution
- Non-Trivial Oblique Spin Equilibria of Super-Earths in Multi-planetary Systems
- HD 20329b: An ultra-short-period planet around a solar-type star found by TESS
- TOI-1075 b: A Dense, Massive, Ultra-Short Period Hot Super-Earth Straddling the Radius Gap
- Oblique rings from migrating exomoons: A possible origin for long-period exoplanets with enlarged radii
- Migrating Planets into Ultra-Short-Period Orbits during Episodic Accretion Events
- A General Origin for Multi-Planetary Systems With Significantly Misaligned USP Planets
- Architecture Classification for Extrasolar Planetary Systems
- A Distinct Population of Small Planets: Sub-Earths
- Mutual Inclination of Ultra-Short-Period Planets with Time Varying Stellar J2-moment
- A hot Mars-sized exoplanet transiting an M dwarf
- Measured Spin-Orbit Alignment of Ultra-Short Period Super-Earth 55 Cancri e
- The distribution of mutual inclinations arising from the stellar quadrupole moment
- Is the orbital distribution of multiplanet systems influenced by pure three-planet resonances?
- Planets Across Space and Time (PAST). VI. Age Dependence of the Occurrence and Architecture of Ultra-Short-Period Planet Systems
- fBLS -- a fast-folding BLS algorithm
- An Earth-sized Planet around an M5 Dwarf Star at 22 pc
- Evolution of the Planetary Obliquity: The Eccentric Kozai-Lidov Mechanism Coupled with Tide
- Hiding Planets Near and Far: The Parameter Space of Hidden Companions for Known Planetary Systems
- Two neighbours of the ultra-short-period Earth-sized planet K2-157 b in the warm Neptunian savanna
- Spin Dynamics of Extrasolar Giant Planets in Planet-Planet Scattering
- Evidence for a Nonzero Eccentricity Superpuff Exoplanet WASP-107 b Using JWST Occultation Observation
- On Tides and Exoplanets
- TrES-1 b: A Case Study in Detecting Secular Evolution of Exoplanet Orbits
- Evidence for a Non-Dichotomous Solution to the Kepler Dichotomy: Mutual Inclinations of Kepler Planetary Systems from Transit Duration Variations
- Two Bright M Dwarfs Hosting Ultra-Short-Period Super-Earths with Earth-like Compositions
- Radius and mass distribution of ultra-short period planets
- Planetary Obliquity Excitation Through Pre-Main Sequence Stellar Evolution
- The Coupled Tidal Evolution of the Moons and Spins of Warm Exoplanets