A New Method For Studying Exoplanet Atmospheres Using Planetary Infrared Excess
arXiv:2007.11438 · doi:10.3847/2041-8213/aba68c
Abstract
To date, the ability for observers to reveal the composition or thermal structure of an exoplanet's atmosphere has rested on two techniques: high-contrast direct imaging and time-series observations of transiting exoplanets. The former is currently limited to characterizing young, massive objects while the latter requires near 90 degree orbital inclinations, thus limiting atmospheric studies to a small fraction of the total exoplanet population. Here we present an observational and analysis technique for studying the atmospheres of non-transiting exoplanets that relies on acquiring simultaneous, broad-wavelength spectra and resolving planetary infrared emission from the stellar spectrum. This method could provide an efficient means to study exoplanet atmospheric dynamics using sparsely-sampled phase curve observations or a mechanism to search for signs of life on non-transiting exoplanets orbiting the nearest M-dwarf stars (such as Proxima Centauri). If shown to be effective with James Webb Space Telescope (JWST) observations, the method of measuring planetary infrared excess (PIE) would open up the large population of nearby, non-transiting exoplanets for atmospheric characterization.
Minor edits, Published in ApJL, 12 pages, 6 figures
References in corpus (12)
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- The phase-dependent Infrared brightness of the extrasolar planet upsilon Andromedae b
- Spitzer Phase Curve Constraints for WASP-43b at 3.6 and 4.5 microns
- The Wide Field Infrared Survey Telescope: 100 Hubbles for the 2020s
- The Habitable Exoplanet Observatory (HabEx) Mission Concept Study Final Report
- A New 24 micron Phase Curve for upsilon Andromedae b
- The LUVOIR Mission Concept Study Final Report
- Signatures of unresolved binaries in stellar spectra: implications for spectral fitting
- Evidence for H Dissociation and Recombination Heat Transport in the Atmosphere of KELT-9b
- Origins Space Telescope Mission Concept Study Report
- iLocater: A Diffraction-limited Doppler Spectrometer for the Large Binocular Telescope
- Simulating the Multi-Epoch Direct Detection Technique to Isolate the Thermal Emission of the Non-Transiting Hot Jupiter HD187123B