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Coma Physics of an Interstellar Object: JWST Spatial-Spectral Mapping of 3I/ATLASWe report a survey of molecular emission from cometary volatiles using the James Webb Space Telescope (JWST) toward interstellar object 3I/ATLAS carried out on UT 2025 December 22 and 23 at a heliocentric distance (\rh{}) of $2.37-2.41$ au. These measurements of CO, \ce{CO2}, \ce{H2O}, \ce{CH3OH}, and \ce{CH4} sampled molecular chemistry in 3I/ATLAS as it receded from its encounter with our Sun and entered the vicinity of the \ce{H2O} ice line --- the region between \rh{} = $2-3$ au where the temperature becomes too low for H$_2$O to vigorously sublime and CO and \ce{CO2} begin to control the overall activity. CO was the most abundant molecule, followed by \ce{H2O} and \ce{CO2}, whose molecular abundances with respect to CO were $(40.5\pm3.1)\%$ and ($41.6\pm0.3)\%$, respectively. This work presents spatial-spectral maps of column density and rotational temperature as a function of distance from the nucleus for all detected species. The spatial distributions of both quantities were highly anisotropic for the apolar species in the coma of 3I/ATLAS, yet were more nearly symmetric for the polar molecules. These results demonstrate how volatiles were segregated in the nucleus ices of 3I/ATLAS and reveal heating and cooling mechanisms in its coma. Derived maps of the ortho-to-para ratio (OPR) for \ce{H2O} were flat with increasing distance from the nucleus and consistent with a coma-averaged value $\mathrm{OPR}=2.7\pm0.2$, slightly less than the expected equilibrium value of three.
Document ID
20260007641
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Nathan X Roth ORCID
(American University Washington, United States)
Martin A Cordiner
(Catholic University of America Washington, United States)
Stefanie N Milam
(Goddard Space Flight Center Greenbelt, United States)
Geronimo L Villanueva
(Goddard Space Flight Center Greenbelt, United States)
Steven B 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)
Steven J Bromley
(Auburn University Auburn, United States)
Jacques Crovisier
(Sorbonne Université Paris, France)
Maria N Drozdovskaya ORCID
(Physikalisch-Meteorologisches Observatorium Davos und Weltstrahlungszentrum Bern, Switzerland)
Sara Faggi
(American University Washington, United States)
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
(Auburn University Auburn, 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
June 24, 2026
Publication Information
Publication: Astrophysical Journal Letters
Publisher: AAS Journals
Volume: 1005
Issue: 1
ISSN: 2041-8205
e-ISSN: 2041-8213
Subject Category
Astrophysics
Funding Number(s)
CONTRACT_GRANT: JWST-GO-05094.001
PROJECT: TSO2025A-00 DFET
CONTRACT_GRANT: 80NM0018D0004
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
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