Planetary Phase Variations of the 55 Cancri System
arXiv:1105.1716 · doi:10.1088/0004-637X/740/2/61
Abstract
Characterization of the composition, surface properties, and atmospheric conditions of exoplanets is a rapidly progressing field as the data to study such aspects become more accessible. Bright targets, such as the multi-planet 55 Cancri system, allow an opportunity to achieve high signal-to-noise for the detection of photometric phase variations to constrain the planetary albedos. The recent discovery that that inner-most planet, 55 Cancri e, transits the host star introduces new prospects for studying this system. Here we calculate photometric phase curves at optical wavelengths for the system with varying assumptions for the surface and atmospheric properties of 55 Cancri e. We show that the large differences in geometric albedo allows one to distinguish between various surface models, that the scattering phase function cannot be constrained with foreseeable data, and that planet b will contribute significantly to the phase variation depending upon the surface of planet e. We discuss detection limits and how these models may be used with future instrumentation to further characterize these planets and distinguish between various assumptions regarding surface conditions.
7 pages, 3 figures, accepted for publication in ApJ
References in corpus (18)
- A Closely-Packed System of Low-Mass, Low-Density Planets Transiting Kepler-11
- Radial velocity planets de-aliased. A new, short period for Super-Earth 55 Cnc e
- A Super-Earth Transiting a Naked-Eye Star
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- Five Planets Orbiting 55 Cancri
- The effects of fly-bys on planetary systems
- Detection of a transit of the super-Earth 55 Cnc e with Warm Spitzer
- Consequences of the Ejection and Disruption of Giant Planets
- A First Comparison of Kepler Planet Candidates in Single and Multiple Systems
- The high albedo of the hot Jupiter Kepler-7b
- 55 Cancri: Stellar Astrophysical Parameters, a Planet in the Habitable Zone, and Implications for the Radius of a Transiting Super-Earth
- The HARPS search for southern extra-solar planets. XXVII. Up to seven planets orbiting HD 10180: probing the architecture of low-mass planetary systems
- Constraining Orbital Parameters Through Planetary Transit Monitoring
- Warm Spitzer Photometry of the Transiting Exoplanets CoRoT-1 and CoRoT-2 at Secondary Eclipse
- Photometric Phase Variations of Long-Period Eccentric Planets
- On the Inclination Dependence of Exoplanet Phase Signatures
- A Search for wide visual companions of exoplanet host stars - The Calar Alto Survey
- The architecture of the GJ876 planetary system. Masses and orbital coplanarity for planets b and c
Cited by in corpus (11)
- Detection of Thermal Emission from a Super-Earth
- The GJ 436 System: Directly Determined Astrophysical Parameters of an M-Dwarf and Implications for the Transiting Hot Neptune
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- The effect of rotation and tidal heating on the thermal lightcurves of Super Mercuries
- Tidal dissipation and eccentricity pumping: Implications for the depth of the secondary eclipse of 55 Cnc e
- Multi-season optical modulation phased with the orbit of the super-Earth 55 Cnc e
- The Dark Planets of the WASP-47 Planetary System
- New MOST Photometry of the 55 Cancri System
- Phase Modeling of the TRAPPIST-1 Planetary Atmospheres
- Phase Curves of the Kepler-11 Multi-Planet System
- The 55 Cancri System: Fundamental Stellar Parameters, Habitable Zone Planet, and Super-Earth Diameter