Dust aerosol, clouds, and the atmospheric optical depth record over 5 Mars years of the Mars Exploration Rover mission
arXiv:1403.4234 · doi:10.1016/j.icarus.2014.03.029
Abstract
Dust aerosol plays a fundamental role in the behavior and evolution of the Martian atmosphere. The first five Mars years of Mars Exploration Rover data provide an unprecedented record of the dust load at two sites. This record is useful for characterization of the atmosphere at the sites and as ground truth for orbital observations. Atmospheric extinction optical depths have been derived from solar images after calibration and correction for time-varying dust that has accumulated on the camera windows. The record includes local, regional, and globally extensive dust storms. Comparison with contemporaneous thermal infrared data suggests significant variation in the size of the dust aerosols, with a 1 μm effective radius during northern summer and a 2 μm effective radius at the onset of a dust lifting event. The solar longitude (LS) 20-136° period is also characterized by the presence of cirriform clouds at the Opportunity site, especially near LS=50 and 115°. In addition to water ice clouds, a water ice haze may also be present, and carbon dioxide clouds may be present early in the season. Variations in dust opacity are important to the energy balance of each site, and work with seasonal variations in insolation to control dust devil frequency at the Spirit site.
60 pages, 12 figures, to be published in Icarus
References in corpus (3)
- Eight-year Climatology of Dust Optical Depth on Mars
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- Dust particle size, shape, and optical depth during the 2018/MY34 Martian Global Dust Storm retrieved by MSL Curiosity rover navigation cameras
- Lifting Grains by the Transient Low Pressure in a Martian Dust Devil
- Visibility and Line-Of-Sight Extinction Estimates in Gale Crater during the 2018/MY34 Global Dust Storm
- Constraints on Mars Aphelion Cloud Belt Phase Function and Ice Crystal Geometries
- Aphelion Cloud Belt Phase Function Investigations with Mars Color Imager (MARCI)