Recovering the colour-dependent albedo of exoplanets with high-resolution spectroscopy: from ESPRESSO to the ELT
arXiv:1805.08021 · doi:10.1093/mnras/sty1355
Abstract
The characterization of planetary atmospheres is a daunting task, pushing current observing facilities to their limits. The next generation of high-resolution spectrographs mounted on large telescopes -- such as ESPRESSO@VLT and HIRES@ELT -- will allow us to probe and characterize exoplanetary atmospheres in greater detail than possible to this point. We present a method that permits the recovery of the colour-dependent reflectivity of exoplanets from high-resolution spectroscopic observations. Determining the wavelength-dependent albedo will provide insight into the chemical properties and weather of the exoplanet atmospheres. For this work, we simulated ESPRESSO@VLT and HIRES@ELT high-resolution observations of known planetary systems with several albedo configurations. We demonstrate how the cross correlation technique applied to theses simulated observations can be used to successfully recover the geometric albedo of exoplanets over a range of wavelengths. In all cases, we were able to recover the wavelength dependent albedo of the simulated exoplanets and distinguish between several atmospheric models representing different atmospheric configurations. In brief, we demonstrate that the cross correlation technique allows for the recovery of exoplanetary albedo functions from optical observations with the next generation of high-resolution spectrographs that will be mounted on large telescopes with reasonable exposure times. Its recovery will permit the characterization of exoplanetary atmospheres in terms of composition and dynamics and consolidates the cross correlation technique as a powerful tool for exoplanet characterization.
Published in MNRAS; 27 pages; 16 figures; 11 tables
References in corpus (21)
- A continuum from clear to cloudy hot-Jupiter exoplanets without primordial water depletion
- The fast spin-rotation of a young extrasolar planet
- The Structure of the Local Interstellar Medium V: Electron Densities
- Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy
- Spectrally resolved detection of sodium in the atmosphere of HD189733b with the HARPS spectrograph
- Thermal Emission and Albedo Spectra of Super Earths with Flat Transmission Spectra
- Combining high-dispersion spectroscopy (HDS) with high contrast imaging (HCI): Probing rocky planets around our nearest neighbors
- Detection of an atmosphere around the super-Earth 55 Cancri e
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- Spitzer Phase Curve Constraints for WASP-43b at 3.6 and 4.5 microns
- Atmospheric characterization of Proxima b by coupling the Sphere high-contrast imager to the Espresso spectrograph
- Weighing The Non-Transiting Hot Jupiter Tau BOO b
- Balancing the Energy Budget of Short-Period Giant Planets: Evidence for Reflective Clouds and Optical Absorbers
- Discovery of water at high spectral resolution in the atmosphere of 51 Peg b
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- Venus upper clouds and the UV-absorber from MESSENGER/MASCS observations
- GALEX Detection of Shock Breakout in Type II-P Supernova PS1-13arp: Implications for the Progenitor Star Wind
- EELT-HIRES the high-resolution spectrograph for the E-ELT
- Probing exoplanet clouds with optical phase curves
- Regaining the FORS: optical ground-based transmission spectroscopy of the exoplanet WASP-19b with VLT+FORS2
- HD 75289Ab revisited - Searching for starlight reflected from a hot Jupiter
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- Low albedos of hot to ultra-hot Jupiters in the optical to near-infrared transition regime
- Behind the Mask: can HARMONI@ELT detect biosignatures in the reflected light of Proxima b?
- The impact of atmospheric dispersion in the performance of high-resolution spectrographs
- Reflected Light Phase Curves in the TESS Era
- Using Independent Component Analysis to detect exoplanet reflection spectrum from composite spectra of exoplanetary binary systems