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◆ Astronomy and Astrophysics2026-01-12· Physics

Identification of solid N <sub>2</sub> O in interstellar ices using open JWST data

V. Karteyeva, R. Nakibov, I. Petrashkevich, M. Medvedev, A. Vasyunin

原始摘要(英文原文)· Original abstract
Context. Only six molecules containing an N-O bond are detected in the gaseous phase of the interstellar medium. One of them is nitrous oxide (N 2 O), which was unsuccessfully searched for in solid form since the launch of the Infrared Space Observatory (ISO) mission. The observational capabilities of the James Webb Space Telescope (JWST) present the possibility of identifying solid interstellar N 2 O. Aims. We aim to identify nitrous oxide in open JWST spectra of interstellar ices toward a sample of Class 0, 0/I, and flat protostars using the relevant laboratory mixtures of N 2 O-bearing interstellar ice analogs. Methods. A set of laboratory infrared transmission spectra was obtained for the following mixtures: N 2 O:CO 2 = 1:20, N 2 O:CO = 1:20, N 2 O:N 2 = 1:20, N 2 O:CO 2 :CO = 1:15:5, and N 2 O:CO 2 :N 2 = 1:15:13 at 10–23 K. A search for N 2 O in JWST NIRSpec spectra toward 50 protostars was performed by fitting the 4.44–4.47 μm (2250–2235 cm −1 ) NN-stretch absorption band with new laboratory mixtures of N 2 O-bearing ices. Results. We claim the first secure identification of N 2 O in 16 protostars. The fitting results show that N 2 O is formed predominantly within the apolar layer of the ice mantles, which are rich in CO, CO 2 , and N 2 . The abundance of solid N 2 O is estimated at 0.2–2.1% relative to solid CO. We present the band strengths for N 2 O in the mixtures corresponding to the apolar layer. We also report the identification of the C-N stretch band at 4.42 μm (2260 cm −1 ), which we tentatively assign to HNCO, the simplest C-N bond carrier.
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Identification of solid N <sub>2</sub> O in interstellar ices using open JWST data — 科研速览 Science Skim