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Expanding the C3_3H6_6O2_2 Isomeric Interstellar Inventory: Discovery of Lactaldehyde and Methoxyacetaldehyde in G+0.693-0.027

Published 12 Jan 2026 in astro-ph.GA | (2601.07365v1)

Abstract: The tentative detection of 3-hydroxypropanal (HO(CH2_2)2_2C(O)H) toward the Galactic center molecular cloud G+0.693-0.027 prompts a systematic survey in this source aimed at detecting all C3_3H6_6O2_2 isomers with available spectroscopy. We use an ultra-deep broadband spectral survey of G+0.693-0.027, carried out with the Yebes 40 m and IRAM 30 m telescopes, to conduct the astronomical search. We report the first interstellar detection of lactaldehyde (CH3_3CH(OH)C(O)H) and methoxyacetaldehyde (CH3_3OCH2_2C(O)H), together with the second detections (i.e., confirmation) of methyl acetate (CH3_3C(O)OCH3_3) and hydroxyacetone (CH3_3C(O)CH2_2OH), and new detections in this source of both antianti- and gauchegauche- conformers of ethyl formate (CH3_3CH2_2OC(O)H), the latter tentatively. In contrast, neither propionic acid, CH3_3CH2_2C(O)OH, nor glycidol, c-CH2_2OCHCH2_2OH (i.e., the most and the least stable species within the C3_3H6_6O2_2 family, respectively) were detected, and we provide upper limits on their fractional abundances of \leq1.5 ×\times 10<sup>10<sup>{-10} and \leq3.7 ×\times 10<sup>11<sup>{-11}. Interestingly, all C3_3H6_6O2_2 isomers can be synthesized through radical-radical reactions on the surface of dust grains, ultimately tracing back to CO as the parent molecule. We suggest that formation of the detected isomers is mainly driven by successive hydrogenation of CO, producing CH3_3OH and CH3_3CH2_2OH as the primary parent species. Conversely, propionic acid is thought to originate from the oxygenation of CO via the HOCO intermediate, which help us rationalize its non-detection. Overall, our findings notably expand the known chemical inventory of the interstellar medium and provide direct observational evidence that increasingly complex chemistry involving O-bearing species occurs in space.

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