Asteroseismic inference on the spin-orbit misalignment and stellar parameters of HAT-P-7
Mikkel N. Lund, Mia Lundkvist, Victor Silva Aguirre, G\"unter Houdek,, Luca Casagrande, Vincent Van Eylen, Tiago L. Campante, Christoffer Karoff,, Hans Kjeldsen, Simon Albrecht, William J. Chaplin, Martin Bo Nielsen, Pieter, Degroote, Guy R. Davies, and Rasmus Handberg

TL;DR
This study uses asteroseismology on Kepler data to precisely determine the stellar parameters and 3D obliquity of HAT-P-7, revealing a likely retrograde and near-polar orbit of its planet, HAT-P-7b.
Contribution
It provides the first asteroseismic measurement of the full 3D obliquity of HAT-P-7 and updates stellar and planetary parameters with high precision.
Findings
Stellar mass: 1.51 solar masses
Stellar age: approximately 2.07 Gyr
Planetary orbit likely retrograde and near-polar
Abstract
The measurement of obliquities in star-planet systems is of great importance for the understanding of planet system formation and evolution. The bright and well studied HAT-P-7 system is intriguing as several Rossiter-McLaughlin (RM) measurements found a large projected obliquity in this system, but it was so far not possible to determine if the orbit is polar and/or retrograde. The goal of this study is to measure the stellar inclination and hereby the full 3D obliquity of the HAT-P-7 system instead of only the 2D projection as measured by the RM effect. In addition we provide an updated set of stellar parameters for the star. We use the full set of available observations from Kepler spanning Q0-Q17 to produce the power spectrum of HAT-P-7. We extract oscillation mode frequencies via an MCMC peak-bagging routine, and use the results from this to estimate the stellar inclination angle.…
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