The tidal quality of the hot Jupiter WASP-12b
arXiv:2111.08273 · doi:10.3390/universe8040211
Abstract
WASP-12b stands out among the planets of its class of hot Jupiters because of the observed fast orbital decay attributed to tidal dissipation. The measured rate of the orbital period is $\stackrel{\bf\centerdot}{\textstyle{P}}_{\rm orb}\,=\,-\,29\pm3\;\mbox{ms/yr}\;$=$\;(9.2\pm1.0)\times10^{-10}\;\mbox{s/s}$. In the literature heretofore, all attempts to explain this high rate were based on the assumption that the orbital evolution is dominated by the tides in the star. Since the modified tidal quality factor in yellow dwarfs is insufficient to warrant such a decay rate, a hypothesis was put forward that the star may actually be a subgiant. Using the latest data from the Gaia mission, we deduce that WASP-12a at is an evolving dwarf at an early stage of post-turn-off evolution that has not yet depleted hydrogen in its core. Its unremarkable position in the color-magnitude diagram and the existence of close planets orbiting red giants of similar mass contradict the hypothesis of an abrupt boost of tidal quality due to structural internal changes. On the other hand, the previous research neglected the tidal dissipation in the planet assuming it to be negligible due to the likely synchronisation of its rotation and a presumed high quality factor. We critically reassess this assumption in the light of recent astrometric results for Jupiter and Saturn. Assuming that the structure of WASP-12b is similar to that of our Jupiter and Saturn, we find that the observed orbital decay is well explained by the tides in the planet. The estimated value of the planet's modified quality factor coincides almost precisely with that of our Jupiter.
References in corpus (20)
- The Gaia mission
- New PARSEC evolutionary tracks of massive stars at low metallicity: testing canonical stellar evolution in nearby star forming dwarf galaxies
- Comparing Jupiter interior structure models to Juno gravity measurements and the role of a dilute core
- Gaia Early Data Release 3: The Gaia Catalogue of Nearby Stars
- Tidal friction in close-in satellites and exoplanets. The Darwin theory re-visited
- The Orbit of WASP-12b is Decaying
- Re-Evaluating WASP-12b: Strong Emission at 2.315 micron, Deeper Occultations, and an Isothermal Atmosphere
- Tidal dissipation in evolving low-mass and solar-type stars with predictions for planetary orbital decay
- Dynamical evolution and spin-orbit resonances of potentially habitable exoplanets. The case of GJ 581d
- Decaying Orbit of the Hot Jupiter WASP-12b: Confirmation with TESS Observations
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- Tidal Dissipation in WASP-12
- Giant planet occurrence within 0.2 AU of low-luminosity red giant branch stars with K2
- Detection of the tidal deformation of WASP-103b at with CHEOPS
- Dynamical tides in exoplanetary systems containing Hot Jupiters: confronting theory and observations
- The surface signature of the tidal dissipation of the core in a two-layer planet
- Layered semi-convection and tides in giant planet interiors - II. Tidal dissipation
- An apparently eccentric orbit of the exoplanet WASP-12 b as a radial velocity signature of planetary-induced tides in the host star
- Phase curve and variability analysis of WASP-12b using TESS photometry
- Tidally induced stellar oscillations: converting modelled oscillations excited by hot Jupiters into observables