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THE HNC/HCN RATIO IN STAR-FORMING REGIONS

机译:恒星形成区域的HNC / HCN比率

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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.
机译:HNC和HCN通常用作分子云中的致密气体示踪剂,是一对异构体,由于其依赖于温度,异构体特有的形成和破坏途径,它们具有作为温度探针的巨大潜力。以前对HNC / HCN丰度比的观察表明,该比值随温度升高而降低,这是标准的化学模型无法重现的。我们已经进行了详细的参数研究,其中环境特征和化学反应会影响HNC / HCN的比例,从而有助于观察到的依赖性。使用现有的具有更新的新反应和反应障碍的气体和气粒模型,我们发现在静态模型中,H + HNC气相反应可在所有条件下调节HNC / HCN比率,除了非常早的时间。我们定量地限制了H丰度和H + HNC反应势垒的组合,可以解释观察到的HNC / HCN温度依赖性,并根据新的量子化学计算讨论其含义。在热身模型中,气粒化学对预测的HNC / HCN比有显着贡献,因此了解恒星形成的动力学是建模HNC / HCN系统的关键。

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