Hot Nights on Extrasolar Planets: Mid-IR Phase Variations of Hot Jupiters
arXiv:0705.1189 · doi:10.1111/j.1365-2966.2007.11897.x
Abstract
We present results from Spitzer Space Telescope observations of the mid-infrared phase variations of three short-period extrasolar planetary systems: HD 209458, HD 179949 and 51 Peg. We gathered IRAC images in multiple wavebands at eight phases of each planet's orbit. We find the uncertainty in relative photometry from one epoch to the next to be significantly larger than the photon counting error at 3.6 micron and 4.5 micron. We are able to place 2-sigma upper limits of only 2% on the phase variations at these wavelengths. At 8 micron the epoch-to-epoch systematic uncertainty is comparable to the photon counting noise and we detect a phase function for HD 179949 which is in phase with the planet's orbit and with a relative peak-to-trough amplitude of 0.00141(33). Assuming that HD 179949b has a radius R_J < R_p < 1.2R_J, it must recirculate less than 21% of incident stellar energy to its night side at the 1-sigma level (where 50% signifies full recirculation). If the planet has a small Bond albedo, it must have a mass less than 2.4 M_J (1-sigma). We do not detect phase variations for the other two systems but we do place the following 2-sigma upper limits: 0.0007 for 51 Peg, and 0.0015 for HD 209458. Due to its edge-on configuration, the upper limit for HD 209458 translates, with appropriate assumptions about Bond albedo, into a lower limit on the recirculation occuring in the planet's atmosphere. HD 209458b must recirculate at least 32% of incident stellar energy to its night side, at the 1-sigma level, which is consistent with other constraints on recirculation from the depth of secondary eclipse depth at 8 micron and the low optical albedo. These data indicate that different Hot Jupiter planets may experience different recirculation efficiencies.
7 pages, 8 figures, accepted for publication in MNRAS, modified Figure 7 and resulting quantities
References in corpus (8)
- Detection of Thermal Emission from an Extrasolar Planet
- The phase-dependent Infrared brightness of the extrasolar planet upsilon Andromedae b
- Dynamics and Disequilibrium Carbon Chemistry in Hot Jupiter Atmospheres, With Application to HD 209458b
- Strong Infrared Emission from the Extrasolar Planet HD189733b
- A Spectrum of an Extrasolar Planet
- Theory for the Secondary Eclipse Fluxes, Spectra, Atmospheres, and Light Curves of Transiting Extrasolar Giant Planets
- A Sensitive Search for Variability in Late L Dwarfs: The Quest for Weather
- K-band transit and secondary eclipse photometry of exoplanet OGLE-TR-113b
Cited by in corpus (41)
- Theoretical Spectra and Light Curves of Close-in Extrasolar Giant Planets and Comparison with Data
- Theoretical Spectral Models of the Planet HD 209458b with a Thermal Inversion and Water Emission Bands
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- Atmospheric Circulation of Hot Jupiters: Three-dimensional circulation models of HD 209458b and HD 189733b with Simplified Forcing
- Alien Maps of an Ocean-Bearing World
- The Very Low Albedo of an Extrasolar Planet: MOST Spacebased Photometry of HD 209458
- Inverting Phase Functions to Map Exoplanets
- Atmospheric Circulation of Hot Jupiters: A Shallow Three-Dimensional Model
- Carbon monoxide and water vapor in the atmosphere of the non-transiting exoplanet HD 179949 b
- Atmospheric Dynamics of Short-period Extra Solar Gas Giant Planets I: Dependence of Night-Side Temperature on Opacity
- The 4.5 m full-orbit phase curve of the hot Jupiter HD 209458b
- Pseudo 2D chemical model of hot Jupiter atmospheres: application to HD 209458b and HD 189733b
- Balancing the Energy Budget of Short-Period Giant Planets: Evidence for Reflective Clouds and Optical Absorbers
- On the Absorption and Redistribution of Energy in Irradiated Planets
- A New 24 micron Phase Curve for upsilon Andromedae b
- Magnetic Effects in Hot Jupiter Atmospheres
- Determining atmospheric conditions at the terminator of the hot-Jupiter HD209458b
- Climate of an Ultra hot Jupiter: Spectroscopic phase curve of WASP-18b with HST/WFC3
- A Semi-Analytical Model of Visible-Wavelength Phase Curves of Exoplanets and Applications to Kepler-7 b and Kepler-10 b
- A transition between the hot and the ultra-hot Jupiter atmospheres
- Carbon monoxide emission lines reveal an inverted atmosphere in the ultra hot Jupiter WASP-33 b consistent with an eastward hot spot
- Detection of a Third Planet in the HD 74156 System Using the Hobby-Eberly Telescope
- Revisiting the Energy Budget of WASP-43b: Enhanced day-night heat transport
- The Dawes Review 3: The Atmospheres of Extrasolar Planets and Brown Dwarfs
- Parameters and Predictions for the Long-Period Transiting Planet HD 17156b
- Detection of a high-velocity sodium feature on the ultra-hot Jupiter WASP-121 b
- The Pale Green Dot: A Method to Characterize Proxima Centauri b using Exo-Aurorae
- On Signatures of Atmospheric Features in Thermal Phase Curves of Hot Jupiters
- A survey of exoplanet phase curves with Ariel
- Diurnal Thermal Tides in a Non-synchronized Hot Jupiter
- Observational Consequences of Shallow-water Magnetohydrodynamics on Hot Jupiters
- HD 179949b: A Close Orbiting Extrasolar Giant Planet with a stratosphere?
- Polarization of hot Jupiter systems: a likely detection of stellar activity and a possible detection of planetary polarization
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- Non-Axisymmetric Flows on Hot Jupiters with Oblique Magnetic Fields
- SPORK That Spectrum: Increasing Detection Significances from High-Resolution Exoplanet Spectroscopy with Novel Smoothing Algorithms
- Spitzer 24-micron Time-Series Observations of the Eclipsing M-dwarf Binary GU Bootis
- A New Atmospheric Model for HD 189733 b
- Westward hotspot offset explained by subcritical dynamo action in an ultra-hot Jupiter atmosphere
- Emergent Exoplanet Flux: Review of the Spitzer Results
- The Magnetic Mechanism for Hotspot Reversals in Hot Jupiter Atmospheres