SPHEREx Pre-Perihelion Mapping of $\mathrm{H_2O}$, $\mathrm{CO_2}$, and $\mathrm{CO}$ in Interstellar Object 3I/ATLAS
Carey M. Lisse, Yoonsoo P. Bach, Brendan P. Crill, Phil M. Korngut, Ari J. Cukierman, Sean A. Bryan, Asantha Cooray, C. Darren Dowell, Michael W. Werner, Joseph L. Hora, Zafar Rustamkulov, Jeong-Eun Lee, Bumhoo Lim, Y. R. Fernandez, Volker Tolls, W. T. Reach, O. Dor\'e

TL;DR
This study used SPHEREx observations to detect water, CO2, and CO gases in interstellar object 3I/ATLAS, revealing a large CO2 atmosphere and comet-like activity, indicating significant thermal processing before ejection into space.
Contribution
First detection of a large CO2 atmosphere and detailed gas composition in interstellar object 3I/ATLAS using SPHEREx data, highlighting its comet-like behavior and thermal history.
Findings
Detected water gas emission at 2.7-2.8 μm.
Discovered a CO2 atmosphere extending over 4.2×10^5 km.
Observed comet-like activity similar to 103P/Hartley 2.
Abstract
From 01- to 15-Aug-2025UT, the SPHEREx spacecraft observed interstellar object 3I/ATLAS. Using spectrophotometry at m, light curves, spectra, and imaging of ATLAS were obtained. From these, robust detections of water gas emission at m and gas at m plus tentative detections of and gas were found. A slightly extended coma was detected, and a huge atmosphere of extending out to at least km was discovered. Gas production rates and 1 errors for , , , and were , , , and , respectively. Co-addition of all m scattered light continuum images from produced a high SNR image consistent with…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Astro and Planetary Science · Astronomy and Astrophysical Research
