English

Dynamical Constraints on the Core Mass of Hot Jupiter HAT-P-13b

Earth and Planetary Astrophysics 2016-04-20 v1

Abstract

HAT-P-13b is a Jupiter-mass transiting exoplanet that has settled onto a stable, short-period, and mildly eccentric orbit as a consequence of the action of tidal dissipation and perturbations from a second, highly eccentric, outer companion. Due to the special orbital configuration of the HAT-P-13 system, the magnitude of HAT-P-13b's eccentricity (ebe_b) is in part dictated by its Love number (k2bk_{2_b}), which is in turn a proxy for the degree of central mass concentration in its interior. Thus, the measurement of ebe_b constrains k2bk_{2_b} and allows us to place otherwise elusive constraints on the mass of HAT-P-13b's core (Mcore,bM_{\rm{core,b}}). In this study we derive new constraints on the value of ebe_b by observing two secondary eclipses of HAT-P-13b with the Infrared Array Camera on board the Spitzer Space Telescope\textit{Spitzer Space Telescope}. We fit the measured secondary eclipse times simultaneously with radial velocity measurements and find that eb=0.00700±0.00100e_b = 0.00700 \pm 0.00100. We then use octupole-order secular perturbation theory to find the corresponding k2b=0.310.05+0.08k_{2_b} = 0.31^{+0.08}_{-0.05}. Applying structural evolution models, we then find, with 68\% confidence, that Mcore,bM_{\rm{core,b}} is less than 25 Earth masses (MM_{\oplus}). The most likely value of Mcore,b=11MM_{\rm{core,b}} = 11 M_{\oplus}, which is similar to the core mass theoretically required for runaway gas accretion. This is the tightest constraint to date on the core mass of a hot Jupiter. Additionally, we find that the measured secondary eclipse depths, which are in the 3.6 μ\mum and 4.5 μ\mum bands, best match atmospheric model predictions with a dayside temperature inversion and relatively efficient day-night circulation.

Keywords

Cite

@article{arxiv.1602.03895,
  title  = {Dynamical Constraints on the Core Mass of Hot Jupiter HAT-P-13b},
  author = {Peter Buhler and Heather Knutson and Konstantin Batygin and BJ Fulton and Jonathan Fortney and Adam Burrows and Ian Wong},
  journal= {arXiv preprint arXiv:1602.03895},
  year   = {2016}
}

Comments

12 pages, 5 figures, 1 table, Accepted to ApJ on February 10, 2016