Hierarchical Bayesian calibration of tidal orbit decay rates among hot Jupiters
arXiv:1801.10561 · doi:10.1093/mnras/sty292
Abstract
Transiting hot Jupiters occupy a wedge-shaped region in the mass ratio-orbital separation diagram. Its upper boundary is eroded by tidal spiral-in of massive, close-in planets and is sensitive to the stellar tidal dissipation parameter . We develop a simple generative model of the orbital separation distribution of the known population of transiting hot Jupiters, subject to tidal orbital decay, XUV-driven evaporation and observational selection bias. From the joint likelihood of the observed orbital separations of hot Jupiters discovered in ground-based wide-field transit surveys, measured with respect to the hyperparameters of the underlying population model, we recover narrow posterior probability distributions for in two different tidal forcing frequency regimes. We validate the method using mock samples of transiting planets with known tidal parameters. We find that and its temperature dependence are retrieved reliably over five orders of magnitude in . A large sample of hot Jupiters from small-aperture ground-based surveys yields for 223 systems in the equilibrium-tide regime. We detect no significant dependence of on stellar effective temperature. A further 19 systems in the dynamical-tide regime yield , indicating stronger coupling. Detection probabilities for transiting planets at a given orbital separation scale inversely with the increase in their tidal migration rates since birth. The resulting bias towards younger systems explains why the surface gravities of hot Jupiters correlate with their host stars' chromospheric emission fluxes. We predict departures from a linear transit-timing ephemeris of less than 4 seconds for WASP-18 over a 20-year baseline.
15 pages, 13 figures, accepted for publication in MNRAS
References in corpus (12)
- Atmospheric Escape from Hot Jupiters
- The effect of red noise on planetary transit detection
- TrES-1: The Transiting Planet of a Bright K0V Star
- On the tidal evolution of Hot Jupiters on inclined orbits
- The Exoplanet Orbit Database II: Updates to exoplanets.org
- A fast hybrid algorithm for exoplanetary transit searches
- Falling Transiting Extrasolar Giant Planets
- A comparison of gyrochronological and isochronal age estimates for transiting exoplanet host stars
- Discrepancies between isochrone fitting and gyrochronology for exoplanet host stars?
- Evolution of angular-momentum-losing exoplanetary systems : Revisiting Darwin stability
- Revisiting the correlation between stellar activity and planetary surface gravity
- Searching For Rapid Orbital Decay of WASP-18b
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- Machine-learning Approaches to Exoplanet Transit Detection and Candidate Validation in Wide-field Ground-based Surveys
- TraMoS V. Updated ephemeris and multi-epoch monitoring of the hot Jupiters WASP-18Ab, WASP-19b, and WASP-77Ab
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- TOI-503: The first known brown dwarf-Am star binary from the TESS mission
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- Transit timing variations in the WASP-4 planetary system
- The TESS Grand Unified Hot Jupiter Survey. II. Twenty New Giant Planets
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- Internal magnetic fields, spin-orbit coupling, and orbital period modulation in close binary systems
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- Stellar activity and rotation of the planet host Kepler-17 from long-term space-borne photometry
- TOI-1268b: the youngest, hot, Saturn-mass transiting exoplanet
- KELT-22Ab: A Massive Hot Jupiter Transiting a Near Solar Twin
- Investigation of an orbital decay and global modeling of the planet WASP-43 b
- TASTE V. A new ground-based investigation of orbital decay in the ultra-hot Jupiter WASP-12b
- The ultra-hot-Jupiter KELT-16 b: Dynamical Evolution and Atmospheric Properties
- Unraveling the evolution of hot Jupiter systems under the effect of tidal and magnetic interactions and mass loss
- The impact of tidal friction evolution on the orbital decay of ultra-short period planets
- Star-planet interactions VI. Tides, stellar activity and planet evaporation
- Pre-discovery transits of the exoplanets WASP-18 b and WASP-33 b from Hipparcos
- Greening of the Brown Dwarf Desert. EPIC 212036875 b -- a 51 M object in a 5 day orbit around an F7 V star
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- Orbital period modulation in hot Jupiter systems
- Tidal excitation of autoresonant oscillations in stars with close-by planets
- Comprehensive Bayesian Modeling of Tidal Circularization in Open Cluster Binaries part I: M 35, NGC 6819, NGC 188
- Planet Across Space and Time (PAST). VII. The origin and tidal evolution of hot Jupiters constrained by a broken age-frequency relation
- Homogeneous planet masses I: Reanalysis of archival HARPS radial velocities
- BD-14 3065b (TOI-4987b): from giant planet to brown dwarf: evidence for deuterium burning in old age?
- Further Evidence for Tidal Spin-Up of Hot Jupiter Host Stars
- Non-transiting exoplanets as a means of understanding star-planet interactions in close-in systems
- Characterizing the WASP-4 system with TESS and radial velocity data: Constraints on the cause of the hot Jupiter's changing orbit and evidence of an outer planet
- Observational imprints of tidal internal gravity wave dissipation in star-planet systems