The Atmosphere and Interior Structure of HAT-P-13b from Spitzer Secondary Eclipses
arXiv:1701.00828 · doi:10.3847/1538-4357/836/1/143
Abstract
We present {\em Spitzer} secondary-eclipse observations of the hot Jupiter HAT-P-13 b in the 3.6 {\micron} and 4.5 {\micron} bands. HAT-P-13 b inhabits a two-planet system with a configuration that enables constraints on the planet's second Love number, \math{k\sb{2}}, from precise eccentricity measurements, which in turn constrains models of the planet's interior structure. We exploit the direct measurements of \math{e \cos ω} from our secondary-eclipse data and combine them with previously published radial velocity data to generate a refined model of the planet's orbit and thus an improved estimate on the possible interval for \math{k\sb{2}}. We report eclipse phases of \math{0.49154 \pm 0.00080} and \math{0.49711 \pm 0.00083} and corresponding \math{e \cos ω} estimates of \math{-0.0136 \pm 0.0013} and \math{-0.0048 \pm 0.0013}. Under the assumptions of previous work, our estimate of \math{k\sb{2}} of 0.81 {\pm} 0.10 is consistent with the lower extremes of possible core masses found by previous models, including models with no solid core. This anomalous result challenges both interior models and the dynamical assumptions that enable them, including the essential assumption of apsidal alignment. We also report eclipse depths of 0.081\% {\pm} 0.008\% in the 3.6 {\micron} channel and 0.088 \% {\pm} 0.028 \% in the 4.5 {\micron} channel. These photometric results are non-uniquely consistent with solar-abundance composition without any thermal inversion.
Accepted for publication by The Astrophysical Journal December 12, 2016
References in corpus (7)
- Achieving better than 1 minute accuracy in the Heliocentric and Barycentric Julian Dates
- Friends of Hot Jupiters I: A Radial Velocity Search for Massive, Long-Period Companions to Close-In Gas Giant Planets
- Possible thermochemical disequilibrium in the atmosphere of the exoplanet GJ 436b
- Long-term tidal evolution of short-period planets with companions
- On Correlated-noise Analyses Applied To Exoplanet Light Curves
- Deciphering the Atmospheric Composition of WASP-12b: A Comprehensive Analysis of its Dayside Emission
- Analytical Model of Tidal Distortion and Dissipation for a Giant Planet with a Viscoelastic Core
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