科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Astronomy and Astrophysics2026-03-31· Astrophysics

JOYS: Linking the molecular ice and gas phase composition toward the high-mass hot core IRAS 18089–1732

C. Gieser, W. R. M. Rocha, Y. Eugene Chen, K. Slavicinska, E. F. van Dishoeck, P. Nazari, N. G. C. Brunken, L. Francis, H. Beuther, S. Reyes-Reyes, A. Caratti o Garatti, P. D. Klaassen, J. M. Vorster, M. G. Navarro

原始摘要(英文原文)· Original abstract
Context. The formation and destruction of molecules in the interstellar medium involve a complex interplay between gas phase reactions, as well as processes on grain surfaces and within icy mantles. In recent decades, the gas phase composition of the cold material toward star-forming regions could be well characterized using (sub)millimeter facilities. Prior to the launch of the James Webb Space Telescope (JWST), ice species other than the main constituents (i.e., H 2 O, CO, CO 2 , NH 3 , CH 4 , and CH 3 OH) were challenging to detect due to insufficient sensitivity as well as angular and/or spectral resolution. Aims. We aim to determine molecular ice and gas phase column densities toward the young and embedded high-mass hot core IRAS 18089-1732 within a region of 5000 au. Methods. We used spectroscopic data from 5 to 28 μm obtained with JWST to derive the ice column densities of H 2 O, SO 2 , OCN − , CH 4 , HCOO − , HCOOH, CH 3 CHO, CH 3 COOH, C 2 H 5 OH, CH 3 OCH 3 , and CH 3 COCH 3 . We inferred the gas phase column densities for a total of 38 molecules, including O-, N-, S-, and Si-bearing species, as well as less abundant isotopologs, from sensitive molecular line observations taken with the Atacama Large Millimeter/submillimeter Array (ALMA) at 3 mm wavelengths. Results. We find comparable abundances (relative to C 2 H 5 OH or CH 3 OH) in both phases for C 2 H 5 OH, CH 3 OH, and CH 3 OCH 3 . The abundances of SO 2 and CH 3 COCH 3 are higher in the gas phase, suggesting additional gas phase formation routes. The abundance of CH 3 CHO is one order of magnitude higher in the ices compared to the gas phase. The ice abundances (relative to H 2 O ice) toward the IRAS 18089 hot core are similar to previously studied Galactic low- and high-mass protostars. There are hints of a decreasing abundance with galactocentric distance for OCN − , CH 3 OH, and CH 3 CHO ices. Conclusions. It is evident that not all species show comparable abundances in the ice and gas phases. However, we do find similar trends when species show elevated ice or gas phase abundances in the high-mass hot core IRAS 18089, compared to low-mass hot cores. To better understand the reaction pathways of molecular species, statistical surveys analyzing both the ice and gas phase chemical composition of high- and low-mass protostars at different Galactocentric radii are essential.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

JOYS: Linking the molecular ice and gas phase composition toward the high-mass hot core IRAS 18089–1732 — 科研速览 Science Skim