paper

WASP-121 b: a hot Jupiter in a polar orbit and close to tidal disruption

arXiv:1506.02471 · doi:10.1093/mnras/stw522

Abstract

We present the discovery by the WASP-South survey, in close collaboration with the Euler and TRAPPIST telescopes, of WASP-121 b, a new remarkable short-period transiting hot Jupiter, whose planetary nature has been statistically validated by the PASTIS software. The planet has a mass of , a radius of 1.865 0.044 , and transits every days an active F6-type main-sequence star (=10.4, , 1.458 0.030 , = 6460 140 K). A notable property of WASP-121 b is that its orbital semi-major axis is only 1.15 times larger than its Roche limit, which suggests that the planet might be close to tidal disruption. Furthermore, its large size and extreme irradiation ( erg ) make it an excellent target for atmospheric studies via secondary eclipse observations. Using the TRAPPIST telescope, we indeed detect its emission in the -band at better than 4, the measured occultation depth being 603 130 ppm. Finally, from a measurement of the Rossiter-McLaughlin effect with the CORALIE spectrograph, we infer a sky-projected spin-orbit angle of deg. This result indicates a significant misalignment between the spin axis of the host star and the orbital plane of the planet, the planet being in a nearly polar orbit. Such a high misalignment suggests a migration of the planet involving strong dynamical events with a third body.

Submitted to MNRAS. 21 pages, 15 figures, 7 tables