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KELT-7b: A hot Jupiter transiting a bright V=8.54 rapidly rotating F-star

Published 22 Jan 2015 in astro-ph.EP | (1501.05565v2)

Abstract: We report the discovery of KELT-7b, a transiting hot Jupiter with a mass of 1.28±0.181.28 \pm 0.18 MJ, radius of 1.530.047<sup>+0.0461.53_{-0.047}<sup>{+0.046} RJ, and an orbital period of 2.7347749±0.00000392.7347749 \pm 0.0000039 days. The bright host star (HD33643; KELT-7) is an F-star with V=8.54V=8.54, Teff =678949<sup>+50=6789_{-49}<sup>{+50} K, [Fe/H] =0.1390.081<sup>+0.075=0.139_{-0.081}<sup>{+0.075}, and logg=4.149±0.019\log{g}=4.149 \pm 0.019. It has a mass of 1.5350.054<sup>+0.0661.535_{-0.054}<sup>{+0.066} Msun, a radius of 1.7320.045<sup>+0.0431.732_{-0.045}<sup>{+0.043} Rsun, and is the fifth most massive, fifth hottest, and the ninth brightest star known to host a transiting planet. It is also the brightest star around which KELT has discovered a transiting planet. Thus, KELT-7b is an ideal target for detailed characterization given its relatively low surface gravity, high equilibrium temperature, and bright host star. The rapid rotation of the star (73±0.573 \pm 0.5 km/s) results in a Rossiter-McLaughlin effect with an unusually large amplitude of several hundred m/s. We find that the orbit normal of the planet is likely to be well-aligned with the stellar spin axis, with a projected spin-orbit alignment of λ=9.7±5.2\lambda=9.7 \pm 5.2 degrees. This is currently the second most rapidly rotating star to have a reflex signal (and thus mass determination) due to a planetary companion measured.

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