Evaluating Climate Variability of the Canonical Hot-Jupiters HD 189733b and HD 209458b through Multi-epoch Eclipse Observations
Abstract
Here we present the analysis of multi-epoch secondary eclipse observations of HD 189733b and HD 209458b as a probe of temporal variability in the planetary climate using both Spitzer channels 1 and 2 (3.6 and 4.5 μm). We expect hot-Jupiter atmospheres to be dynamic environments exhibiting time varying weather. However, it is uncertain to what extent temporal variability will be observable when considering disk integrated observations. We do not detect statistically significant variability and are able to place useful upper limits on the infrared variability amplitudes in these atmospheres. There are very few planets with multi-epoch observations at the required precision to probe variability in dayside emission. The observations considered in this study span several years, providing insight into temporal variability at multiple timescales. In the case of HD 189733b, the best-fit eclipse depths for the channel 2 observations exhibit a scatter of 102 ppm about a median depth of 1827 ppm and in channel 1 exhibit a scatter of 88 ppm about a median depth of 1481 ppm. For HD 209458b, the best-fit eclipse depths for the channel 2 observations exhibit a scatter of 22 ppm about a median depth of 1406 ppm, and in channel 1 exhibit a scatter of 131 ppm about a median depth of 1092 ppm. The precision and scatter in these observations allow us to constrain variability to less than (5.6% and 6.0%) and (12% and 1.6%) for channels (1, 2) of HD 189733b and HD 209458b, respectively.
Additional Information
© 2020 The American Astronomical Society. Received 2019 April 3; revised 2019 November 18; accepted 2019 December 14; published 2020 January 16. This work was supported by NASA Headquarters under the NASA Earth and Space Science Fellowship Program under grant No. 80NSSC17K0484. This work is based on observations made with the Spitzer Space Telescope, which is operated by the Jet Propulsion Laboratory, California Institute of Technology under a contract with NASA. We also acknowledge that part of this work was completed at the Space Telescope Science Institute (STScI) operated by AURA, Inc. This research has made use of the Exoplanet Orbit Database and the Exoplanet Data Explorer at exoplanets.org.Attached Files
Published - Kilpatrick_2020_AJ_159_51.pdf
Accepted Version - 1904.02294.pdf
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Additional details
- Eprint ID
- 102258
- Resolver ID
- CaltechAUTHORS:20200402-083204689
- NASA Earth and Space Science Fellowship
- 80NSSC17K0484
- NASA/JPL/Caltech
- Created
-
2020-04-02Created from EPrint's datestamp field
- Updated
-
2021-11-16Created from EPrint's last_modified field
- Caltech groups
- Astronomy Department, Division of Geological and Planetary Sciences