Related Experiment Video
Updated: Nov 21, 2025

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
An assessment of the spatial extent of polar dust using satellite thermal data
1Department of Physics and Space Science, Royal Military College of Canada, Kingston, K7K 7B4, Canada.
Abstract:
The effect of mineral dust aerosols and subsequent deposition in polar regions has historically been underestimated in climate models. Dust aerosols increase melt rates by reducing surface albedo and modifying atmospheric radiative properties. In this study 127,413 satellite images covering the Arctic and Antarctic from 2007 to 2019 were assessed for dust content using thermal infrared wavelengths. The results show a strong linear trend in which the relative spatial extent of dust (RSED) increased annually by 0.31% in the Arctic (8.5% to 12.1%) and 0.19% in the Antarctic (5.2% to 7.5%). Seasonally, the maximum aggregated average RSED occurred in the Arctic during boreal winter (11.2%), while the Antarctic peaked in austral spring (9.5%). Maximum RSED rates occurred in boreal winter/austral summer (Dec-Jan-Feb) for both polar regions. The data suggests that finer dust particles are more efficiently distributed by aeolian processes leading to higher RSED values that are not necessarily reflective of polar dust loading models.
More Related Videos
Related Concept Videos
Graphs of Polar Equations
Global Climate Change
Polar Coordinates
Polar Equations of Conics
Potential Due to a Polarized Object

