English

MOST detects transits of HD 97658b, a warm, likely volatile-rich super-Earth

Earth and Planetary Astrophysics 2015-06-16 v2

Abstract

Through photometric monitoring of the extended transit window of HD 97658b with the MOST space telescope, we have found that this exoplanet transits with an ephemeris consistent with that predicted from radial velocity measurements. The mid-transit times are 5.6σ5.6\sigma earlier than those of the unverified transit-like signals reported in 2011, and we find no connection between the two sets of events. The transit depth together with our determined stellar radius (R=0.7030.034+0.039RR_\star = 0.703^{+0.039}_{-0.034} R_\odot) indicates a 2.340.15+0.18^{+0.18}_{-0.15} RR_{\oplus} super-Earth. When combined with the radial velocity determined mass of 7.86 ±0.73\pm 0.73 MM_{\oplus}, our radius measure allows us to derive a planet density of 3.440.82+0.91^{+0.91}_{-0.82} g cm3^{-3}. Models suggest that a planet with our measured density has a rocky core that is enveloped in an atmosphere composed of lighter elements. The star of the HD 97658 system is the second brightest known to host a transiting super-Earth, facilitating follow-up studies of this not easily daunted, warm and likely volatile-rich exoplanet.

Keywords

Cite

@article{arxiv.1305.7260,
  title  = {MOST detects transits of HD 97658b, a warm, likely volatile-rich super-Earth},
  author = {Diana Dragomir and Jaymie M. Matthews and Jason D. Eastman and Chris Cameron and Andrew W. Howard and David B. Guenther and Rainer Kuschnig and Anthony F. J. Moffat and Jason F. Rowe and Slavek M. Rucinski and Dimitar Sasselov and Werner W. Weiss},
  journal= {arXiv preprint arXiv:1305.7260},
  year   = {2015}
}

Comments

20 pages, 4 figure, 2 tables, published version; appeared in ApJ Letters, volume 772