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Absolute densities, masses, and radii of the WASP-47 system determined dynamically

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arxiv 1610.09533 v1 pith:UZVZOG4Y submitted 2016-10-29 astro-ph.EP

classification astro-ph.EP
keywords curvelightsystemdatadensitiesmassesprecisionradial
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We present a self-consistent modelling of the available light curve and radial velocity data of WASP-47 that takes into account the gravitational interactions between all known bodies in the system. The joint analysis of light curve and radial velocity data in a multi-planetary system allows deriving absolute densities, radii, and masses without the use of theoretical stellar models. For WASP-47 the precision is limited by the reduced dynamical information that is due to the short time span of the K2 light curve. We achieve a precision of around 22% for the radii of the star and the transiting planets, between 40% and 60% for their masses, and between 1.5% and 38% for their densities. All values agree with previously reported measurements. When theoretical stellar models are included, the system parameters are determined with a precision that exceeds that achieved by previous studies, thanks to the self-consistent modelling of light curve and radial velocity data.

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  1. Refined parameters, formation, and dynamical stability of the wild exoplanet system K2-312=HD 80653

    astro-ph.EP 2026-07 conditional novelty 5.0 of 10

    HD 80653c is confirmed as a highly eccentric cold Jupiter (P=871.3 d, e=0.8435, M sin i=5.3 MJup) whose orbit and survival of the inner super-Earth are consistent with planet-planet scattering.

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