English

A Framework for Prioritizing the TESS Planetary Candidates Most Amenable to Atmospheric Characterization

Earth and Planetary Astrophysics 2018-10-10 v2

Abstract

A key legacy of the recently launched TESS mission will be to provide the astronomical community with many of the best transiting exoplanet targets for atmospheric characterization. However, time is of the essence to take full advantage of this opportunity. JWST, although delayed, will still complete its nominal five year mission on a timeline that motivates rapid identification, confirmation, and mass measurement of the top atmospheric characterization targets from TESS. Beyond JWST, future dedicated missions for atmospheric studies such as ARIEL require the discovery and confirmation of several hundred additional sub-Jovian size planets (R_p < 10 R_Earth) orbiting bright stars, beyond those known today, to ensure a successful statistical census of exoplanet atmospheres. Ground-based ELTs will also contribute to surveying the atmospheres of the transiting planets discovered by TESS. Here we present a set of two straightforward analytic metrics, quantifying the expected signal-to-noise in transmission and thermal emission spectroscopy for a given planet, that will allow the top atmospheric characterization targets to be readily identified among the TESS planet candidates. Targets that meet our proposed threshold values for these metrics would be encouraged for rapid follow-up and confirmation via radial velocity mass measurements. Based on the catalog of simulated TESS detections by Sullivan et al. (2015), we determine appropriate cutoff values of the metrics, such that the TESS mission will ultimately yield a sample of 300\sim300 high-quality atmospheric characterization targets across a range of planet size bins, extending down to Earth-size, potentially habitable worlds.

Keywords

Cite

@article{arxiv.1805.03671,
  title  = {A Framework for Prioritizing the TESS Planetary Candidates Most Amenable to Atmospheric Characterization},
  author = {Eliza M. -R. Kempton and Jacob L. Bean and Dana R. Louie and Drake Deming and Daniel D. B. Koll and Megan Mansfield and Jessie L. Christiansen and Mercedes Lopez-Morales and Mark R. Swain and Robert T. Zellem and Sarah Ballard and Thomas Barclay and Joanna K. Barstow and Natasha E. Batalha and Thomas G. Beatty and Zach Berta-Thompson and Jayne Birkby and Lars A. Buchhave and David Charbonneau and Nicolas B. Cowan and Ian Crossfield and Miguel de Val-Borro and Rene Doyon and Diana Dragomir and Eric Gaidos and Kevin Heng and Renyu Hu and Stephen R. Kane and Laura Kreidberg and Matthias Mallonn and Caroline V. Morley and Norio Narita and Valerio Nascimbeni and Enric Palle and Elisa V. Quintana and Emily Rauscher and Sara Seager and Evgenya L. Shkolnik and David K. Sing and Alessandro Sozzetti and Keivan G. Stassun and Jeff A. Valenti and Carolina von Essen},
  journal= {arXiv preprint arXiv:1805.03671},
  year   = {2018}
}

Comments

accepted to PASP