Discovery And Rossiter-Mclaughlin Effect Of Exoplanet Kepler-8B

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Date

2010-12

Authors

Jenkins, Jon M.
Borucki, William J.
Koch, David G.
Marcy, Geoffrey W.
Cochran, William D.
Welsh, William F.
Basri, Gibor
Batalha, Natalie M.
Buchhave, Lars A.
Brown, Timothy M.

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Abstract

We report on the discovery and the Rossiter-McLaughlin (R-M) effect of Kepler-8b, a transiting planet identified by the NASA Kepler Mission. Kepler photometry and Keck-HIRES radial velocities yield the radius and mass of the planet around this F8IV subgiant host star. The planet has a radius R(P) = 1.419 R(J) and a mass M(P) = 0.60 M(J), yielding a density of 0.26 g cm(-3), one of the lowest planetary densities known. The orbital period is P = 3.523 days and the orbital semimajor axis is 0.0483(-0.0012)(+0.0006) AU. The star has a large rotational v sin i of 10.5 +/- 0.7 kms(-1) and is relatively faint (V approximate to 13.89 mag); both properties are deleterious to precise Doppler measurements. The velocities are indeed noisy, with scatter of 30 ms(-1), but exhibit a period and phase that are consistent with those implied by transit photometry. We securely detect the R-M effect, confirming the planet's existence and establishing its orbit as prograde. We measure an inclination between the projected planetary orbital axis and the projected stellar rotation axis of lambda = -26 degrees.4 +/- 10 degrees.1, indicating a significant inclination of the planetary orbit. R-M measurements of a large sample of transiting planets from Kepler will provide a statistically robust measure of the true distribution of spin-orbit orientations for hot Jupiters around F and early G stars.

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Jenkins, Jon M., William J. Borucki, David G. Koch, Geoffrey W. Marcy, William D. Cochran, William F. Welsh, Gibor Basri et al. "Discovery and Rossiter-Mclaughlin effect of exoplanet Kepler-8b." The Astrophysical Journal, Vol. 724, No. 2 (Dec., 2010): 1108.