Published May 10, 2016 | Version Published + Submitted
Journal Article Open

Reflected Light Curves, Spherical and Bond Albedos of Jupiter- and Saturn-like Exoplanets

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon University of California, Santa Cruz
  • 3. ROR icon University of Houston
  • 4. ROR icon Southwest Research Institute
  • 5. ROR icon University of Virginia

Abstract

Reflected light curves observed for exoplanets indicate that a few of them host bright clouds. We estimate how the light curve and total stellar heating of a planet depends on forward and backward scattering in the clouds based on Pioneer and Cassini spacecraft images of Jupiter and Saturn. We fit analytical functions to the local reflected brightnesses of Jupiter and Saturn depending on the planet's phase. These observations cover broadbands at 0.59–0.72 and 0.39–0.5 μm, and narrowbands at 0.938 (atmospheric window), 0.889 (CH4 absorption band), and 0.24–0.28 μm. We simulate the images of the planets with a ray-tracing model, and disk-integrate them to produce the full-orbit light curves. For Jupiter, we also fit the modeled light curves to the observed full-disk brightness. We derive spherical albedos for Jupiter and Saturn, and for planets with Lambertian and Rayleigh-scattering atmospheres. Jupiter-like atmospheres can produce light curves that are a factor of two fainter at half-phase than the Lambertian planet, given the same geometric albedo at transit. The spherical albedo is typically lower than for a Lambertian planet by up to a factor of ~1.5. The Lambertian assumption will underestimate the absorption of the stellar light and the equilibrium temperature of the planetary atmosphere. We also compare our light curves with the light curves of solid bodies: the moons Enceladus and Callisto. Their strong backscattering peak within a few degrees of opposition (secondary eclipse) can lead to an even stronger underestimate of the stellar heating.

Additional Information

© 2016 The American Astronomical Society. Received 2015 November 9; accepted 2016 February 25; published 2016 May 10. This research was supported by the NASA Cassini Project. We thank R.A. West for his critical comments on the manuscript, references on Jupiter's scattering, and help with image calibration. We thank S.P. Ewald for the comments on the manuscript. We thank the anonymous reviewer for useful suggestions.

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Published - apj_822_2_76.pdf

Submitted - 1511.04415.pdf

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Eprint ID
62251
Resolver ID
CaltechAUTHORS:20151119-135603177

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Funding

NASA

Dates

Created
2015-11-19
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Updated
2021-11-10
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