Collisional excitation of HNC by He found to be stronger than for structural isomer HCN in experiments at the low temperatures of interstellar space

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作者
Brian M. Hays
Divita Gupta
Théo Guillaume
Omar Abdelkader Khedaoui
Ilsa R. Cooke
Franck Thibault
François Lique
Ian R. Sims
机构
[1] Univ Rennes,
[2] CNRS,undefined
[3] IPR (Institut de Physique de Rennes) – UMR 6251,undefined
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Nature Chemistry | 2022年 / 14卷
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摘要
HCN and its unstable isomer HNC are widely observed throughout the interstellar medium, with the HNC/HCN abundance ratio correlating strongly with temperature. In very cold environments HNC can even appear more abundant than HCN. Here we use a chirped pulse Fourier transform spectrometer to measure the pressure broadening of HCN and HNC, simultaneously formed in situ by laser photolysis and cooled to low temperatures in uniform supersonic flows of helium. Despite the apparent similarity of these systems, we find the HNC–He cross section to be more than twice as big as the HCN–He cross section at 10 K, confirming earlier quantum calculations. Our experimental results are supported by high-level scattering calculations and are also expected to apply with para-H2, demonstrating that HCN and HNC have different collisional excitation properties that strongly influence the derived interstellar abundances.
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页码:811 / 815
页数:4
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共 120 条
[1]  
Nguyen TL(2015)On the HCN–HNC energy difference J. Phys. Chem. A 119 10929-10934
[2]  
Baraban JH(2015)Spectroscopic characterization of isomerization transition states Science 350 1338-1342
[3]  
Ruscic B(2018)High accuracy ab initio calculations of rotational–vibrational levels of the HCN/HNC system J. Phys. Chem. A 122 1326-1343
[4]  
Stanton JF(1981)High temperature, high resolution infrared spectral measurements on the HNC–HCN equilibrium system J. Chem. Phys. 75 4178-4182
[5]  
Baraban JH(2012)Cold electron reactions producing the energetic isomer of hydrogen cyanide in interstellar clouds Astrophys. J. 746 L8-151
[6]  
Makhnev VY(2020)Photodissociation transition states characterized by chirped pulse millimeter wave spectroscopy Proc. Natl Acad. Sci. USA 117 146-410
[7]  
Maki AG(2014)The interstellar gas-phase chemistry of HCN and HNC Mon. Not. R. Astron. Soc. 443 398-728
[8]  
Sams RL(2020)HCN-to-HNC intensity ratio: a new chemical thermometer for the molecular ISM Astron. Astrophys. 635 A4-876
[9]  
Mendes MB(2021)Exploring HNC and HCN line emission as probes of the protoplanetary disk temperature Astron. Astrophys. 647 A118-1091
[10]  
Prozument K(1998)Abundances of HCN and HNC in dark cloud cores Astrophys. J. 503 717-526