Titan: Earth-like on the Outside, Ocean World on the Inside

Author:

MacKenzie Shannon M.ORCID,Birch Samuel P. D.ORCID,Hörst SarahORCID,Sotin ChristopheORCID,Barth Erika,Lora Juan M.ORCID,Trainer Melissa G.,Corlies PaulORCID,Malaska Michael J.ORCID,Sciamma-O’Brien EllaORCID,Thelen Alexander E.ORCID,Turtle Elizabeth,Radebaugh Jani,Hanley JenniferORCID,Solomonidou AnezinaORCID,Newman Claire,Regoli Leonardo,Rodriguez Sébastien,Seignovert BenôitORCID,Hayes Alexander G.,Journaux Baptiste,Steckloff JordanORCID,Nna-Mvondo DelphineORCID,Cornet ThomasORCID,Palmer Maureen Y.ORCID,Lopes Rosaly M. C.ORCID,Vinatier SandrineORCID,Lorenz RalphORCID,Nixon ConorORCID,Czaplinski Ellen,Barnes Jason W.ORCID,Sittler Ed,Coates AndrewORCID

Abstract

Abstract Thanks to the Cassini–Huygens mission, Titan, the pale orange dot of Pioneer and Voyager encounters, has been revealed to be a dynamic, hydrologically shaped, organic-rich ocean world offering unparalleled opportunities to explore prebiotic chemistry. And while Cassini–Huygens revolutionized our understanding of each of the three “layers” of Titan—the atmosphere, the surface, and the interior—we are only beginning to hypothesize how these realms interact. In this paper, we summarize the current state of Titan knowledge and discuss how future exploration of Titan would address some of the next decade’s most compelling planetary science questions. We also demonstrate why exploring Titan, both with and beyond the Dragonfly New Frontiers mission, is a necessary and complementary component of an Ocean Worlds Program that seeks to understand whether habitable environments exist elsewhere in our solar system.

Funder

NASA

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geophysics,Astronomy and Astrophysics

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