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The photochemical model of Titan's atmosphere and ionosphere: A version without hydrodynamic escape

机译:泰坦大气和电离层的光化学模型:没有流体动力逸出的版本

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摘要

There are observational and theoretical evidences both in favor of and against hydrodynamic escape (HDE) on Titan, and the problem remains unsolved. A test presented here for a static thermosphere does not support HDE on Titan and Triton but favors HDE on Pluto. Cooling of the atmosphere by the HCN rotational lines is limited by rotational relaxation above 1100 km and self-absorption below 900 km on Titan. HDE can affect the structure and composition of the atmosphere and its evolution. Hydrocarbon, nitrile, and ion chemistries are strongly coupled on Titan, and attempts to calculate them separately may result in significant errors. Here we apply our photochemical model of Titan's atmosphere and ionosphere to the case of no hydrodynamic escape. Our model is still the only after-Cassini self-consistent model of coupled neutral and ion chemistry. The lack of HDE is a distinct possibility, and comparing models with and without HDE is of practical interest. The mean difference between the models and the neutral and ion compositions observed by INMS are somewhat better for the model with HDE. A reaction of NH_2 with H_2CN suggested by Yelle et al. (2009) reduces but does not remove a significant difference between the ammonia abundances in the models and INMS observations. Losses of methane and nitrogen and production and deposition to the surface of hydrocarbons and nitriles are evaluated in the model, along with lifetimes and evolutionary aspects.
机译:有观测和理论证据都支持和反对土卫六上的流体动力逃逸(HDE),这个问题仍然没有解决。此处提供的针对静态热层的测试不支持Titan和Triton上的HDE,但支持Pluto上的HDE。 HCN旋转线对大气的冷却受到Titan上1100 km以上的旋转松弛和900 km以下的自吸收的限制。 HDE会影响大气的结构和组成及其演变。烃,腈和离子化学物质在Titan上紧密耦合,尝试分别计算它们可能会导致重大错误。在这里,我们将我们的泰坦大气层和电离层的光化学模型应用于没有流体动力逸出的情况。我们的模型仍然是卡西尼之后中性和离子化学耦合的唯一自洽模型。缺少HDE是一种明显的可能性,比较具有和没有HDE的模型具有实际意义。对于具有HDE的模型,模型与通过INMS观察到的中性和离子组成之间的平均差异要好一些。耶尔等人提出NH_2与H_2CN的反应。 (2009年)减少,但并没有消除模型中的氨含量与INMS观测值之间的显着差异。在模型中评估了甲烷和氮气的损失以及在碳氢化合物和腈表面的生产和沉积,以及寿命和演化方面。

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