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Isotopic Signature of Organic Molecules from Beyond the Solar System: An Enriched Methane D/H Ratio in the Interstellar Object 3I/ATLASInterstellar objects are interlopers from other planetary systems, and their volatile compositions provide a glimpse into planet formation around their host star. We present near-infrared spectra of the coma of interstellar object 3I/ATLAS measured with the James Webb Space Telescope. Our results demonstrate an unexpectedly high D/H = (3.31 ± 0.34)% for methane and represent an exceedingly rare detection of deuterated organic molecules in an interstellar object. This D/H ratio is a factor of 14 ± 2 higher than that measured in comet 67P/Churyumov-Gerasimenko by the Rosetta spacecraft, the only other comet for which CH3D has been detected, yet the ratio of deuteration in methane compared with water is consistent for both comets within 1.2σ. The D/H ratio in methane is observationally unconstrained in extrasolar sources to date, but the enriched ratio in 3I/ATLAS is most similar to those measured in other organic molecules toward primitive environments. The high D/H ratios of water and methane in 3I/ATLAS are a natural consequence of formation in a high D/H elemental ratio environment as a result of locally cold conditions in the protoplanetary disk and prior interstellar cloud. Thus, 3I/ATLAS formed in an environment very different from that in which our Sun and planets originated.
Document ID
20260007639
Acquisition Source
Goddard Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
Nathan X Roth ORCID
(American University Washington, United States)
Martin Cordiner
(Catholic University of America Washington, United States)
Stefanie Milam
(Goddard Space Flight Center Greenbelt, United States)
Geronimo Villanueva
(Goddard Space Flight Center Greenbelt, United States)
Steven Charnley
(Goddard Space Flight Center Greenbelt, United States)
Nicolas Biver ORCID
(Sorbonne Université Paris, France)
Dominique Bockelee-Morvan ORCID
(Sorbonne Université Paris, France)
Dennis Bodewits ORCID
(Auburn University Auburn, United States)
Jacques Crovisier
(Sorbonne Université Paris, France)
Maria N Drozdovskaya ORCID
(Physikalisch-Meteorologisches Observatorium Davos Davos, Switzerland)
Davide Farnocchia
(Jet Propulsion Laboratory Pasadena, United States)
Kenji Furuya
(RIKEN Center for Interdisciplinary Theoretical and Mathematical Sciences Wako, Japan)
Michael S P Kelley ORCID
(University of Maryland, College Park College Park, United States)
Marco Micheli ORCID
(European Space Agency Paris, France)
John W Noonan ORCID
(Jet Propulsion Laboratory Pasadena, United States)
Cyrielle Opitom
(University of Edinburgh Edinburgh, United Kingdom)
Megan E Schwamb ORCID
(Queen's University Belfast Belfast, United Kingdom)
Cristina A Thomas ORCID
(Northern Arizona University Flagstaff, United States)
Date Acquired
August 10, 2026
Publication Date
July 10, 2026
Publication Information
Publication: Nature Astronomy
Publisher: Nature Research
e-ISSN: 2397-3366
Subject Category
Astrophysics
Astronomy
Funding Number(s)
CONTRACT_GRANT: 80NM0018D0004
CONTRACT_GRANT: ST/X001253/1
OTHER: LCOEPO2023B-013
PROJECT: TSO2025A-00
CONTRACT_GRANT: NAS 5-03127
CONTRACT_GRANT: JWST-GO-05094.001
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
Interstellar Object 3I/ATLAS
Interstellar Medium
Isotopic Ratios
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