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Although hydrogen cyanide has become quite a common molecular tracing species for a variety of astrophysical sources, it, however, exhibits dramatic non-LTE behaviour in its hyperfine line structure. Individual hyperfine components can be…

太阳与恒星天体物理 · 物理学 2018-03-14 Robert M. Loughnane , Matt P. Redman , Eric R. Keto , Nadia Lo , Maria R. Cunningham

Isocyanic acid (HNCO) is a simple molecule with a potential to form prebiotic and complex organic species. Using a spectral survey collected with the Atacama Pathfinder EXperiment (APEX), in this work we report the detection of 42…

Syn-glycolamide, a glycine isomer, has recently been detected in the G+0.693-0.027 molecular cloud. Investigations on its formation in the interstellar medium could offer insights into synthetic routes leading to glycine in prebiotic…

星系天体物理 · 物理学 2025-04-25 Jessica Perrero , Silvia Alessandrini , Hexu Ye , Cristina Puzzarini , Albert Rimola

In the interstellar medium, the amide-type molecules play an important role in the formation of the prebiotic molecules in the hot molecular cores or high-mass star formation regions. The complex amide-related molecule cyanamide…

星系天体物理 · 物理学 2022-11-02 Arijit Manna , Sabyasachi Pal

In the interstellar cold gas, the chemistry of formaldehyde (H$_2$CO) can be essential to explain the formation of complex organic molecules. On this matter, the massive and energetic protostellar object G331 is still unexplored and, hence,…

星系天体物理 · 物理学 2023-08-09 Edgar Mendoza , Miguel Carvajal , Manuel Merello , Leonardo Bronfman , Heloisa M. Boechat-Roberty

Hydrogen cyanide (HCN) is a well-known product in combustion, astrophysical, and plasma environments, but its isomer, hydrogen isocyanide (HNC), remains unexplored in molecular plasmas. Here, we report on the detection and quantification of…

化学物理 · 物理学 2026-04-02 Ibrahim Sadiek , Simona Di Bernardo , Uwe Macherius , Jean-Pierre H. van Helden

The aim of this study is to investigate systematic chemical differentiation of molecules in regions of high mass star formation. We observed five prominent sites of high mass star formation in HCN, HNC, HCO+, their isotopes, C18O, C34S and…

星系天体物理 · 物理学 2010-11-02 I. Zinchenko , P. Caselli , L. Pirogov

Gas-phase hydroxylamine (NH$_2$OH) has recently been detected within dense clouds in the interstellar medium. However, it is also likely present within interstellar ices, as well as on the icy surfaces of outer Solar System bodies, where it…

The previous detection of two species related to the non polar molecule cyanogen (NCCN), its protonated form (NCCNH+) and one metastable isomer (CNCN), in cold dense clouds supported the hypothesis that dicyanopolyynes are abundant in…

星系天体物理 · 物理学 2022-12-28 M. Agundez , C. Cabezas , N. Marcelino , R. Fuentetaja , B. Tercero , P. de Vicente , J. Cernicharo

New insights into the formation of interstellar formamide, a species of great relevance in prebiotic chemistry, are provided by electronic structure and kinetic calculations for the reaction NH2 + H2CO -> NH2CHO + H. Contrarily to what…

星系天体物理 · 物理学 2015-08-19 V. Barone , C. Latouche , D. Skouteris , F. Vazart , N. Balucani , C. Ceccarelli , B. Lefloch

We present a theoretical investigation of CN and HCN molecule formation in dense interstellar clouds. We study the gas-phase CN and HCN production efficiencies from the outer photon-dominated regions (PDRs) into the opaque cosmic-ray…

天体物理学 · 物理学 2009-11-13 Gai I. Boger , Amiel Sternberg

Quantum chemical cluster calculations show that reactions of C$^+$ with HCN or HNC embedded in the surface of an icy grain mantle can account for the formation of a recently detected molecule, glycolonitrile, which is considered to be an…

星系天体物理 · 物理学 2021-01-13 David E. Woon

HCN is among the most commonly detected molecules in star- and planet-forming regions. It is of broad interest as a tracer of star-formation physics, a probe of nitrogen astrochemistry, and an ingredient in prebiotic chemical schemes.…

地球与行星天体物理 · 物理学 2022-07-27 Jennifer B. Bergner , Mahesh Rajappan , Karin I. Oberg

The 4.62 micron absorption band, observed along the line-of-sight towards various young stellar objects, is generally used as a qualitative indicator for energetic processing of interstellar ice mantles. This interpretation is based on the…

天体物理学 · 物理学 2009-11-10 F. A. van Broekhuizen , J. V. Keane , W. A. Schutte

Stars form out of the densest parts of molecular clouds. Far-IR emission can be used to estimate the Star Formation Rate (SFR) and high dipole moment molecules, typically HCN, trace the dense gas. A strong correlation exists between HCN and…

星系天体物理 · 物理学 2016-12-28 J. Braine , Y. Shimajiri , P. André , S. Bontemps , Yu Gao , Hao Chen , C. Kramer

Isocyanic acid (HNCO), the most stable of the simplest molecules containing the four main elements essential for organic chemistry, has been observed in several astrophysical environments such as molecular clouds, star-forming regions,…

We study the chemical evolution of H2O:CO:NH3 ice mixtures irradiated with soft X-rays, in the range 250-1250 eV. We identify many nitrogen-bearing molecules such as e.g., OCN-, NH4+ , HNCO, CH3CN, HCONH2, and NH2COCONH2. Several infrared…

Interstellar complex organic molecules (iCOMs) can be loosely defined as chemical compounds with at least six atoms in which at least one is carbon. The observations of iCOMs in star-forming regions have shown that they contain an important…

太阳与恒星天体物理 · 物理学 2019-09-30 Joan Enrique-Romero , Albert Rimola , Cecilia Ceccarelli , Piero Ugliengo , Nadia Balucani , Dimitrios Skouteris

Interstellar CO2 is an important reservoir of carbon and oxygen, and one of the major constituents of the icy mantles of dust grains, but it is not observable directly in the cold gas because has no permanent dipole moment. Its protonated…

星系天体物理 · 物理学 2018-09-19 F. Fontani , A. Vagnoli , M. Padovani , L. Colzi , P. Caselli , V. M. Rivilla

Carbon dioxide (CO$_2$) is one of the most important interstellar molecules. While it is considered that it forms on the surface of interstellar dust grains, the exact contribution of different chemical mechanisms is still poorly…