Kepler Monitoring of an L Dwarf II. Clouds with Multiyear Lifetimes
arXiv:1509.07186 · doi:10.1088/0004-637X/813/2/104
Abstract
We present Kepler, Spitzer Space Telescope, Gemini-North, MMT, and Kitt Peak observations of the L1 dwarf WISEP J190648.47+401106.8. We find that the Kepler optical light curve is consistent in phase and amplitude over the nearly two years of monitoring with a peak-to-peak amplitude of 1.4%. Spitzer Infrared Array Camera 3.6 micron observations are in phase with Kepler with similar light curve shape and peak-to-peak amplitude 1.1%, but at 4.5 micron, the variability has amplitude 0.1%. Chromospheric H emission is variable but not synced with the stable Kepler light curve. A single dark spot can reproduce the light curve but is not a unique solution. An inhomogeneous cloud deck, specifically a region of thick cloud cover, can explain the multi-wavelength data of this ultracool dwarf and need not be coupled with the asynchronous magnetic emission variations. The long life of the cloud is in contrast with weather changes seen in cooler brown dwarfs on the timescale of hours and days.
Accepted to ApJ
References in corpus (14)
- The K2 Mission: Characterization and Early results
- The Evolution of L and T Dwarfs in Color-Magnitude Diagrams
- Weather on Other Worlds. II. Survey Results: Spots Are Ubiquitous on L and T Dwarfs
- Strong Brightness Variations Signal Cloudy-to-Clear Transition of Brown Dwarfs
- Spitzer/IRAC Photometry of M, L, and T Dwarfs
- Vertical Atmospheric Structure in a Variable Brown Dwarf: Pressure-dependent Phase Shifts in Simultaneous Hubble Space Telescope-Spitzer Light Curves
- Brown Dwarf Photospheres are Patchy: A Hubble Space Telescope Near-infrared Spectroscopic Survey Finds Frequent Low-level Variability
- Atmospheric Circulation of Brown Dwarfs: Jets, Vortices, and Time Variability
- The Brown dwarf Atmosphere Monitoring (BAM) Project I: The largest near-IR monitoring survey of L- & T-dwarfs
- Temperature Fluctuations as a Source of Brown Dwarf Variability
- A Monitoring Campaign for Luhman 16AB. I. Detection of Resolved Near-Infrared Spectroscopic Variability
- A Search for Photometric Variability in L and T type Brown Dwarf Atmospheres
- Rotational Modulation of M/L Dwarfs due to Magnetic Spots
- Observations of Ultracool dwarfs with ULTRACAM on the VLT: a search for weather
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- Neptune's Dynamic Atmosphere from Kepler K2 Observations: Implications for Brown Dwarf Light Curve Analyses
- On the Detection of Exomoons Transiting Isolated Planetary-Mass Objects
- A High-Contrast Search for Variability in HR 8799bc with VLT-SPHERE
- Cloud Atlas: Variability in and out of the Water Band in the Planetary-mass HD 203030B Points to Cloud Sedimentation in Low-gravity L Dwarfs
- Rotation periods and photometric variability of rapidly rotating ultra-cool dwarfs
- Weather on Other Worlds. IV. H emission and photometric variability are not correlated in L0T8 dwarfs
- Detection of a giant white-light flare on an L2.5 dwarf with the Next Generation Transit Survey
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