The spin-orbit angle of the transiting hot jupiter CoRoT-1b
Pont, F. · Endl, M. · Cochran, W. D. · Barnes, S. I. · Sneden, C. · MacQueen, P. J. · Moutou, C. · Aigrain, S. · Alonso, R. · Baglin, A. · Bouchy, F. · Deleuil, M. · Fridlund, M. · Hebrard, G. · Hatzes., A. · Mazeh, T. · Shporer, A.
الأصل · EN
We measure the angle between the planetary orbit and the stellar rotation axis in the transiting planetary system CoRoT-1, with new HIRES/Keck and FORS/VLT high-accuracy photometry. The data indicate a highly tilted system, with a projected spin-orbit angle lambda = 77 +- 11 degrees. Systematic uncertainties in the radial velocity data could cause the actual errors to be larger by an unknown amount, and this result needs to be confirmed with further high-accuracy spectroscopic transit measurements. Spin-orbit alignment has now been measured in a dozen extra-solar planetary systems, and several show strong misalignment. The first three misaligned planets were all much more massive than Jupiter and followed eccentric orbits. CoRoT-1, however, is a jovian-mass close-in planet on a circular orbit. If its strong misalignment is confirmed, it would break this pattern. The high occurence of misaligned systems for several types of planets and orbits favours planet-planet scattering as a mechanism to bring gas giants on very close orbits.
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