Reflected Light Phase Curves in the TESS Era
arXiv:1905.12662 · doi:10.3847/1538-3881/ab29fa
Abstract
The reflected light signal from a planet throughout its orbit is a powerful probe of a planet's atmospheric properties. There are a number of planets that are amenable to reflected light phase curve studies with present and future space-based instrumentation and here we assess our ability to characterize these worlds. Using simulated TESS populations we identify the Nine, a set of archetypal exoplanets with the potential to be bright in reflected light, because of their radii and proximity to their star, while still being cool enough to have minimal thermal contamination at optical wavelengths. For each planet we compute albedo spectra for several cloud and atmosphere assumptions (e.g. thermochemical equilibrium, solar composition). We find that in the TESS bandpass the estimated contrast at optical wavelengths is typically <10 ppm except for the brightest, largest, or closest in planets with the highest lofted clouds where contrast can reach a few tens of ppm. Meanwhile, in a bluer bandpass (0.3--0.5 microns) the estimated contrast can be as high as 150 ppm but typically 10-50 ppm. In the temperature range of interest, planets with the highest, most extensive cloud decks are generally darker at bluer wavelengths than cloudless planets because of the low single scattering albedos of their primary condensate constituents. Our models suggest that Neptune-sized planets with relatively low insolation and small semi-major axes are the most conducive to reflected light phase curve studies in TESS.
28 pages, 9 Figures, 3 Tables, Accepted to AJ
References in corpus (10)
- The Transiting Exoplanet Survey Satellite
- The 0.8-14.5 micron Spectra of Mid-L to Mid-T Dwarfs: Diagnostics of Effective Temperature, Grain Sedimentation, Gas Transport, and Surface Gravity
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- Exoplanet Reflected Light Spectroscopy with PICASO
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- Temperature Fluctuations as a Source of Brown Dwarf Variability
- Sulfur Hazes in Giant Exoplanet Atmospheres: Impacts on Reflected Light Spectra
- The Very Low Albedo of WASP-12b From Spectral Eclipse Observations with
- Variability in the Atmosphere of the Hot Jupiter Kepler-76b
Cited by in corpus (4)
- Simulating gas giant exoplanet atmospheres with Exo-FMS: Comparing semi-grey, picket fence and correlated-k radiative-transfer schemes
- Science Extraction from TESS Observations of Known Exoplanet Hosts
- Variable Irradiation on 1D Cloudless Eccentric Exoplanet Atmospheres
- Scattered light may reveal the existence of ringed exoplanets