Probing exoplanet clouds with optical phase curves
arXiv:1511.01424 · doi:10.1073/pnas.1509135112
Abstract
Kepler-7b is to date the only exoplanet for which clouds have been inferred from the optical phase curve -- from visible-wavelength whole-disk brightness measurements as a function of orbital phase. Added to this, the fact that the phase curve appears dominated by reflected starlight makes this close-in giant planet a unique study case. Here we investigate the information on coverage and optical properties of the planet clouds contained in the measured phase curve. We generate cloud maps of Kepler-7b and use a multiple-scattering approach to create synthetic phase curves, thus connecting postulated clouds with measurements. We show that optical phase curves can help constrain the composition and size of the cloud particles. Indeed, model fitting for Kepler-7b requires poorly absorbing particles that scatter with low-to-moderate anisotropic efficiency, conclusions consistent with condensates of silicates, perovskite, and silica of submicron radii. We also show that we are limited in our ability to pin down the extent and location of the clouds. These considerations are relevant to the interpretation of optical phase curves with general circulation models. Finally, we estimate that the spherical albedo of Kepler-7b over the Kepler passband is in the range 0.4--0.5.
Published, www.pnas.org/cgi/doi/10.1073/pnas.1509135112
References in corpus (13)
- The Transiting Exoplanet Survey Satellite
- Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy
- Can TiO Explain Thermal Inversions in the Upper Atmospheres of Irradiated Giant Planets?
- Transmission spectral properties of clouds for hot Jupiter exoplanets
- The Very Low Albedo of an Extrasolar Planet: MOST Spacebased Photometry of HD 209458
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- Balancing the Energy Budget of Short-Period Giant Planets: Evidence for Reflective Clouds and Optical Absorbers
- A New 24 micron Phase Curve for upsilon Andromedae b
- A Semi-Analytical Model of Visible-Wavelength Phase Curves of Exoplanets and Applications to Kepler-7 b and Kepler-10 b
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- The Albedos of Kepler's Close-in super-Earths
- Towards a comprehensive model of Earth's disk-integrated Stokes vector
- Phase Curves of the Kepler-11 Multi-Planet System
Cited by in corpus (41)
- Exoplanetary Atmospheres: Key Insights, Challenges and Prospects
- Transitions in the cloud composition of hot Jupiters
- Exoplanet Reflected Light Spectroscopy with PICASO
- The cloudy shape of hot Jupiter thermal phase curves
- Aerosols in Exoplanet Atmospheres
- Transit Signatures of Inhomogeneous Clouds on Hot Jupiters: Insights From Microphysical Cloud Modeling
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- The astrophysics of visible-light orbital phase curves in the space age
- Clouds in Three-Dimensional Models of Hot Jupiters Over a Wide Range of Temperatures I: Thermal Structures and Broadband Phase Curve Predictions
- The Near-Infrared Spectrograph (NIRSpec) on the James Webb Space Telescope IV. Capabilities and predicted performance for exoplanet characterization
- Modeled Temperature-Dependent Clouds with Radiative Feedback in Hot Jupiter Atmospheres
- The Very Low Albedo of WASP-12b From Spectral Eclipse Observations with
- Simulating gas giant exoplanet atmospheres with Exo-FMS: Comparing semi-grey, picket fence and correlated-k radiative-transfer schemes
- Modeling the effects of inhomogeneous aerosols on the hot Jupiter Kepler-7b's atmospheric circulation
- 3D radiative-transfer for exoplanet atmospheres. gCMCRT: a GPU accelerated MCRT code
- Optical phase curves as diagnostics for aerosol composition in exoplanetary atmospheres
- Exoplanet phase curves: observations and theory
- Hubble PanCET: An isothermal day-side atmosphere for the bloated gas-giant HAT-P-32Ab
- Low albedos of hot to ultra-hot Jupiters in the optical to near-infrared transition regime
- Comprehensive Wide-Band Magnitudes and Albedos for the Planets, With Applications to Exo-Planets and Planet Nine
- Spatially Resolved Modeling of Optical Albedos for a Sample of Six Hot Jupiters
- Data availability and requirements relevant for the Ariel space mission and other exoplanet atmosphere applications
- Exoplanetary Monte Carlo Radiative Transfer with Correlated-k I. Benchmarking Transit and Emission Observables
- Using polarimetry to retrieve the cloud coverage of Earth-like exoplanets
- A Multiple Scattering Polarized Radiative Transfer Model: Application to HD 189733b
- The power of wavelets in analysis of transit and phase curves in presence of stellar variability and instrumental noise I. Method and validation
- Titan brighter at twilight than in daylight
- Large Interferometer For Exoplanets (LIFE). X. Detectability of currently known exoplanets and synergies with future IR/O/UV reflected-starlight imaging missions
- Dynamics and Clouds in Planetary Atmospheres from Telescopic Observations
- Dynamic mineral clouds on HD 189733b II. Monte Carlo radiative transfer for 3D cloudy exoplanet atmospheres: combining scattering and emission spectra
- Exoplanet phase curves at large phase angles. Diagnostics for extended hazy atmospheres
- Reflected Light Phase Curves in the TESS Era
- Recovering the colour-dependent albedo of exoplanets with high-resolution spectroscopy: from ESPRESSO to the ELT
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- On mapping exoplanet atmospheres with high-dispersion spectro-polarimetry. Some model predictions
- The Hubble PanCET program: Transit and Eclipse Spectroscopy of the Hot Jupiter WASP-74b
- Observations of scattered light from exoplanet atmospheres
- Light Scattering Measurements of KCl Particles as an Exoplanet Cloud Analog
- The SPACE Program. I. The featureless spectrum of HD 86226 c challenges sub-Neptune atmosphere trends
- Reflected-light Phase Curves with PICASO: A Kepler-7b Case Study
- Reflected light from giant planets in habitable zones: Tapping into the power of the Cross-Correlation Function