English

Mass Loss from the Exoplanet WASP-12b Inferred from $\textit{Spitzer}$ Phase Curves

Earth and Planetary Astrophysics 2019-09-17 v4 Solar and Stellar Astrophysics

Abstract

The exoplanet WASP-12b is the prototype for the emerging class of ultra-hot, Jupiter-mass exoplanets. Past models have predicted---and near ultra-violet observations have shown---that this planet is losing mass. We present an analysis of two sets of 3.6 μ\mum and 4.5 μ\mum Spitzer\textit{Spitzer} phase curve observations of the system which show clear evidence of infrared radiation from gas stripped from the planet, and the gas appears to be flowing directly toward or away from the host star. This accretion signature is only seen at 4.5 μ\mum, not at 3.6 μ\mum, which is indicative either of CO emission at the longer wavelength or blackbody emission from cool, \lesssim 600 K gas. It is unclear why WASP-12b is the only ultra-hot Jupiter to exhibit this mass loss signature, but perhaps WASP-12b's orbit is decaying as some have claimed, while the orbits of other exoplanets may be more stable; alternatively, the high energy irradiation from WASP-12A may be stronger than the other host stars. We also find evidence for phase offset variability at the level of 6.4σ6.4\sigma (46.246.2^{\circ}) at 3.6 μ\mum.

Keywords

Cite

@article{arxiv.1906.04742,
  title  = {Mass Loss from the Exoplanet WASP-12b Inferred from $\textit{Spitzer}$ Phase Curves},
  author = {Taylor J. Bell and Michael Zhang and Patricio E. Cubillos and Lisa Dang and Luca Fossati and Kamen O. Todorov and Nicolas B. Cowan and Drake Deming and Robert T. Zellem and Kevin B. Stevenson and Ian J. M. Crossfield and Ian Dobbs-Dixon and Jonathan J. Fortney and Heather A. Knutson and Michael R. Line},
  journal= {arXiv preprint arXiv:1906.04742},
  year   = {2019}
}

Comments

9 pages plus appendices and supplementary information, published in MNRAS