NASA NTRS · 20260005628
Isotopic Evidence for A Cold and Distant Origin of 3I/Atlas
Abstract
Interstellar objects provide the only directly observable samples of icy planetesimals formed around other stars, and can therefore provide insight into the diversity of physical and chemical conditions occurring during exoplanet formation1−3. Here we report isotopic measurements of the interstellar comet 3I/ATLAS, which reveal an elemental composition unlike any Solar System body. The water in 3I/ATLAS is enriched in deuterium, at a level of D/H = (0.98 ± 0.06)%, which is more than an order of magnitude higher than in known comets, while its range of 12 C/ 13 C ratios (141–191 for CO 2 and 123–172 for CO) exceeds typical values found in the Solar System, as well as nearby interstellar clouds and protoplanetary disks. Such extreme isotopic signatures indicate formation at temperatures ≲ 30 K in a relatively metal-poor environment. When interpreted with respect to models for Galactic chemical evolution, the carbon isotopic composition implies that 3I/ATLAS may have accreted as long ago as 12 billion years, following a period of intense, early star formation. 3I/ATLAS thus represents a preserved fragment of an ancient planetary system.
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Martin A Cordiner, Nathan X Roth, Marco Micheli, Geronimo Villanueva, Davide Farnocchia, Steven B Charnley, Nicolas Biver, Dominique Bockelee-Morvan, Dennis Bodewits, Colin Orion Chandler, Jacques Crovisier, Maria N Drozdovskaya, Kenji Furuya, Michael Kelley, Stefanie N Milam, John W Noonan, Cyrielle Opitom, Megan E Schwamb, Cristina A Thomas. 2026-06-22. Isotopic Evidence for A Cold and Distant Origin of 3I/Atlas. https://ntrs.nasa.gov/citations/20260005628
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