Photometric Variability of the Disk Integrated Infrared Emission of the Earth
arXiv:1205.5010 · doi:10.1088/0004-637X/752/1/28
Abstract
We present an analysis of the global-integrated mid-infrared emission flux of the Earth based on data derived from satellite measurements. We have studied the photometric annual, seasonal, and rotational variability of the thermal emission of the Earth to determine which properties can be inferred from the point-like signal. We find that the analysis of the time series allows us to determine the 24 hr rotational period of the planet for most observing geometries, due to large warm and cold areas, identified with geographic features, which appear consecutively in the observer's planetary view. However, the effects of global-scale meteorology can effectively mask the rotation for several days at a time. We also find that orbital time series exhibit a seasonal modulation, whose amplitude depends strongly on the latitude of the observer but weakly on its ecliptic longitude. As no systematic difference of brightness temperature is found between the dayside and nightside, the phase variations of the Earth in the infrared range are negligible. Finally, we also conclude that the phase variation of a spatially unresolved Earth-Moon system is dominated by the lunar signal.
11 pages, 10 figures. Accepted for publication in ApJ
References in corpus (1)
Cited by in corpus (16)
- The habitability of Proxima Centauri b II. Possible climates and Observability
- How to Characterize Habitable Worlds and Signs of Life
- Exoplanet Biosignatures: Observational Prospects
- Detection of Ocean Glint and Ozone Absorption Using LCROSS Earth Observations
- Thermal Phases of Earth-Like Planets: Estimating Thermal Inertia from Eccentricity, Obliquity, and Diurnal Forcing
- The effect of rotation and tidal heating on the thermal lightcurves of Super Mercuries
- On the effects of the evolution of microbial mats and land plants on the Earth as a planet. Photometric and spectroscopic light curves of paleo-Earths
- Transmission Spectroscopy with the ACE-FTS Infrared Spectral Atlas of Earth: A Model Validation and Feasibility Study
- On High-Contrast Characterization of Nearby, Short-Period Exoplanets with Giant Segmented-Mirror Telescopes
- Variability of Water and Oxygen Absorption Bands in the Disk-Integrated Spectra of the Earth
- On The Feasibility of Exomoon Detection Via Exoplanet Phase Curve Spectral Contrast
- Impact of ηearth on the capabilities of affordable space missions to detect biosignatures on extrasolar planets
- Mapping Exoplanets
- Earth as an Exoplanet. II. Earth's Time-variable Thermal Emission and Its Atmospheric Seasonality of Bioindicators
- Earth as an Exoplanet: I. Time variable thermal emission using spatially resolved MODIS data
- Earth as an Exoplanet. III. Using Empirical Thermal Emission Spectra as an Input for Atmospheric Retrieval of an Earth-twin Exoplanet