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Cassini Spots Dust Storms on Saturn’s Moon Titan

Cassini Spots Dust Storms on Saturn’s Moon Titan

Sentinel Digital DeskBy : Sentinel Digital Desk

  |  26 Sep 2018 8:08 AM GMT

London: NASA’s Cassini spacecraft has revealed giant dust storms in the equatorial regions of Saturn’s moon Titan, making it the third space body after Earth and Mars where dust storms have been observed. The observation was obtained with Cassini’s Visual and Infrared Mapping Spectrometer, that explored Saturn and its moons between 2004 and 2017. The spacecraft deliberately plunged into Saturn on September 15, 2017.

The findings, led by a team from the Universite Paris Diderot in France, showed active dust cycles, in which organic dust can be raised from large dune fields around Titan’s equator. Organic dust is formed when organic molecules, formed from the interaction of sunlight with methane, grow large enough to fall to the surface.

Titan is the only celestial body other than our planet where stable bodies of surface liquid are known to still exist, and primarily methane and ethane flow through its liquid reservoirs. The weather on Titan varies from season to season and in particular, around the equinox — the time when the Sun crosses Titan’s equator — massive clouds can form in tropical regions and cause powerful methane storms.

While Cassini has observed such storms during several of its Titan flybys, an investigation revealed that this time it is something completely different. Since the features were located right over the dune fields around Titan’s equator, the only remaining explanation was that the spots were actually clouds of dust raised from the dunes.

The existence of such strong winds generating massive dust storms implies that the underlying sand can be set in motion, too, and that the giant dunes covering Titan’s equatorial regions are still active and continually changing. The winds could be transporting the dust raised from the dunes across large distances, contributing to the global cycle of organic dust on Titan and causing similar effects to those that can be observed on Earth and Mars. (IANS)

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