Variability in the Atmosphere of the Hot Jupiter Kepler-76b
arXiv:1905.07781 · doi:10.3847/1538-3881/ab1b30
Abstract
Phase curves and secondary eclipses of gaseous exoplanets are diagnostic of atmospheric composition and meteorology, and the long observational baseline and high photometric precision from the Kepler Mission make its dataset well-suited for exploring phase curve variability, which provides additional insights into atmospheric dynamics. Observations of the hot Jupiter Kepler-76b span more than 1,000 days, providing an ideal dataset to search for atmospheric variability. In this study, we find that Kepler-76b's secondary eclipse, with a depth of parts-per-million (ppm), corresponds to an effective temperature of 2,830 K. Our results also show clear indications of variability in Kepler-76b's atmospheric emission and reflectivity, with the phase curve amplitude typically ppm but varying between 35 and 70 ppm over tens of days. As is common for hot Jupiters, Kepler-76b's phase curve shows a discernible offset of eastward of the sub-stellar point and varying in concert with the amplitude. These variations may arise from the advance and retreat of thermal structures and cloud formations in Kepler-76b's atmosphere; the resulting thermal perturbations may couple with the super-rotation expected to transport aerosols, giving rise to a feedback loop. Looking forward, the TESS Mission can provide new insight into planetary atmospheres, with good prospects to observe both secondary eclipses and phase curves among targets from the mission. TESS's increased sensitivity in red wavelengths as compared to Kepler means that it will probably probe different aspects of planetary atmospheres.
27 pages, 10 figures; In press with ApJ
References in corpus (8)
- The NumPy array: a structure for efficient numerical computation
- Detection of Thermal Emission from an Extrasolar Planet
- Limb darkening and exoplanets: testing stellar model atmospheres and identifying biases in transit parameters
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- Variability in the Atmosphere of the Hot Giant Planet HAT-P-7 b
- Detection of a Westward Hotspot Offset in the Atmosphere of a Hot Gas Giant CoRoT-2b
- Shallow-water Magnetohydrodynamics for Westward Hotspots on Hot Jupiters
- Analytic solutions to the maximum and average exoplanet transit depth for common stellar limb darkening laws
Cited by in corpus (24)
- The Atmospheric Circulation of Ultra-hot Jupiters
- Hot Jupiters: Origins, Structure, Atmospheres
- Aerosols in Exoplanet Atmospheres
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- Carbon monoxide emission lines reveal an inverted atmosphere in the ultra hot Jupiter WASP-33 b consistent with an eastward hot spot
- Visible-light Phase Curves from the Second Year of the TESS Primary Mission
- Temporal Variability in Hot Jupiter Atmospheres
- TESS Revisits WASP-12: Updated Orbital Decay Rate and Constraints on Atmospheric Variability
- TOI-2109b: An Ultrahot Gas Giant on a 16 hr Orbit
- Gemini/GMOS Optical Transmission Spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter?
- Is the atmosphere of the ultra-hot Jupiter WASP-121b variable?
- Modons on Tidally Synchronised Extrasolar Planets
- Reassessing the Evidence for Time Variability in the Atmosphere of the Exoplanet HAT-P-7 b
- A Lack of Variability Between Repeated Spitzer Phase Curves of WASP-43b
- Observational Consequences of Shallow-water Magnetohydrodynamics on Hot Jupiters
- Optical photometry of two transitional millisecond pulsars in the radio pulsar state
- Reflected Light Phase Curves in the TESS Era
- The apparent tidal decay of WASP-4 b can be explained by the Rømer effect
- Variability from thermo-resistive instability in the atmospheres of hot jupiters
- HST Transmission Spectra of the Hot-Neptune HD 219666 b: Detection of Water and the Challenge of Constraining Both Water and Methane
- Influences of internal forcing on atmospheric circulations of irradiated giant planets
- Reflected-light Phase Curves with PICASO: A Kepler-7b Case Study
- General Circulation Model Errors are Variable across Exoclimate Parameter Spaces
- The Magnetic Mechanism for Hotspot Reversals in Hot Jupiter Atmospheres