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THE HNC/HCN RATIO IN STAR-FORMING REGIONS
被引:88
作者:
Graninger, Dawn M.
[1
]
Herbst, Eric
[2
,4
]
Oeberg, Karin I.
[1
]
Vasyunin, Anton I.
[3
]
机构:
[1] Harvard Smithsonian Ctr Astrophys, Cambridge, MA 02138 USA
[2] Univ Virginia, Dept Chem, Charlottesville, VA 22901 USA
[3] Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England
[4] Univ Virginia, Dept Phys & Astron, Charlottesville, VA 22903 USA
基金:
欧洲研究理事会;
美国国家科学基金会;
关键词:
astrochemistry;
ISM: molecules;
stars: formation;
GAS-GRAIN CHEMISTRY;
DENSE INTERSTELLAR CLOUDS;
HCN/HNC ABUNDANCE RATIO;
MONTE-CARLO TREATMENT;
HYDROGEN-CYANIDE;
ROTATIONAL-EXCITATION;
MOLECULAR CLOUDS;
CHEMICAL-MODELS;
HCN;
HNC;
D O I:
10.1088/0004-637X/787/1/74
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
HNC and HCN, typically used as dense gas tracers in molecular clouds, are a pair of isomers that have great potential as a temperature probe because of temperature dependent, isomer-specific formation and destruction pathways. Previous observations of the HNC/HCN abundance ratio show that the ratio decreases with increasing temperature, something that standard astrochemical models cannot reproduce. We have undertaken a detailed parameter study on which environmental characteristics and chemical reactions affect the HNC/HCN ratio and can thus contribute to the observed dependence. Using existing gas and gas-grain models updated with new reactions and reaction barriers, we find that in static models the H + HNC gas-phase reaction regulates the HNC/HCN ratio under all conditions, except for very early times. We quantitatively constrain the combinations of H abundance and H + HNC reaction barrier that can explain the observed HNC/HCN temperature dependence and discuss the implications in light of new quantum chemical calculations. In warm-up models, gas-grain chemistry contributes significantly to the predicted HNC/HCN ratio and understanding the dynamics of star formation is therefore key to model the HNC/HCN system.
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