English

WASP-12b: The hottest transiting planet yet discovered

Astrophysics 2011-02-11 v2

Abstract

We report on the discovery of WASP-12b, a new transiting extrasolar planet with Rpl=1.79±0.09RJR_{\rm pl}=1.79 \pm 0.09 R_J and Mpl=1.41±0.1MJM_{\rm pl}=1.41 \pm 0.1 M_J. The planet and host star properties were derived from a Monte Carlo Markov Chain analysis of the transit photometry and radial velocity data. Furthermore, by comparing the stellar spectrum with theoretical spectra and stellar evolution models, we determined that the host star is a super-solar metallicity ([M/H]=0.30.15+0.05=0.3^{+0.05}_{-0.15}), late-F (Teff=6300100+200_{\rm eff}=6300^{+200}_{-100} K) star which is evolving off the zero age main sequence. The planet has an equilibrium temperature of Teq_{\rm eq}=2516 K caused by its very short period orbit (P=1.09P=1.09 days) around the hot, 12th magnitude host star. WASP-12b has the largest radius of any transiting planet yet detected. It is also the most heavily irradiated and the shortest period planet in the literature.

Keywords

Cite

@article{arxiv.0812.3240,
  title  = {WASP-12b: The hottest transiting planet yet discovered},
  author = {L. Hebb and A. Collier-Cameron and B. Loeillet and D. Pollacco and G. Hébrard and R. A. Street and F. Bouchy and H. C. Stempels and C. Moutou and E. Simpson and S. Udry and Y. C. Yoshi and R. G. West and I. Skillen and D. M. Wilson and I. McDonald and N. P. Gibson and the SuperWasp Consortium},
  journal= {arXiv preprint arXiv:0812.3240},
  year   = {2011}
}

Comments

This replaced version corrects typo in HJD0 of transit time