High nitrogen and carbon isotopic ratios in the interstellar comet 3I/ATLAS

Высокие изотопные соотношения азота и углерода в межзвёздной комете 3I/ATLAS
Emmanuël Jehin, Dennis Bodewits, Cyrielle Opitom, Matthew M. Knight, Fiorangela La Forgia, C. Snodgrass, D. Hutsemékers, Jean Manfroid, Manuela Lippi, Martin Cordiner, Léa Ferellec, Rosemary C. Dorsey, K. Aravind, V. V. Guzmán, B. P. Murphy, M. Bannister
2026-07-06

CN molecule observationscarbon isotopic ratio (12C/13C)interstellar comet 3I/ATLASnitrogen isotopic ratio (14N/15N)outer protoplanetary disk, low-metallicity star
Abstract Interstellar objects provide a unique opportunity to deepen our understanding of planetary formation by enabling detailed study of material formed around other stars. Their ices contain precious clues about the environment and conditions prevailing in their home system. As fractionation processes can be sensitive to the temperature and radiation environment, isotopic ratios are powerful tracers of the origin and evolution of different species. While isotopic ratios have been measured in Solar System comets, previously detected interstellar objects have been too faint to measure isotopic ratios. Here we report the measurement of two ratios in 3I/ATLAS from observations of the CN molecule: 12 C/ 13 C = $${151}_{-44}^{+110}$$ 151 - 44 + 110 and 14 N/ 15 N = $$36{3}_{-153}^{+633}$$ 36 3 − 153 + 633 . The 14 N/ 15 N is higher than the value of ~150 usually measured for Solar System comets, close to the values measured in the interstellar medium, prestellar phases or outside of protoplanetary disks. The 12 C/ 13 C is higher than the values usually measured for Solar System comets and in the local interstellar medium. These measurements are compatible with an origin of 3I in the outer disk around an older low-metallicity star, providing potential insights into the likelihood and efficiency of planetesimal formation around such stars.
1
Isotopic measurements are consistent with an origin in the outer disk of an older, low-metallicity star, implying planetesimal formation around such stars may be likely or efficient.
2
Measured isotopic ratios in interstellar comet 3I/ATLAS from CN: 12C/13C = 151^{+110}_{-44} and 14N/15N = 36^{+633}_{-153}.
3
The 12C/13C ratio in 3I/ATLAS is higher than values usually measured in Solar System comets and in the local interstellar medium.
4
The 14N/15N ratio in 3I/ATLAS is higher than the ~150 typical of Solar System comets and is similar to values in the interstellar medium and prestellar phases.

Interstellar comet 3I/ATLAS

Measured nitrogen and carbon isotopic ratios (14N/15N and 12C/13C) in CN, and their implications for the comet's origin and formation environment

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2026-07-06
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Authors
Emmanuël Jehin
Dennis Bodewits
Cyrielle Opitom
Matthew M. Knight
Fiorangela La Forgia
C. Snodgrass
D. Hutsemékers
Jean Manfroid
Manuela Lippi
Martin Cordiner
Léa Ferellec
Rosemary C. Dorsey
K. Aravind
V. V. Guzmán
B. P. Murphy
M. Bannister
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