论文标题

在冰壁上氢原子的遇到解吸中

On the Encounter Desorption of Hydrogen Atoms on Ice Mantle

论文作者

Chang, Qiang, Zheng, Xuli, Zhang, Xia, Quan, Donghui, Lu, Yang, Meng, Qingkuan, Li, Xiaohu, Chen, Long-Fei

论文摘要

在低温(10 K)下,氢原子可以在谷物冰盖上迅速扩散,并经常遇到氢分子,这些氢分子覆盖了明显的谷物表面。 H原子在H2底物上的解吸能远低于水冰上的解吸能。采用H原子遇到的解吸机制来研究H2底物上H原子的增强解吸。使用一个小反应网络,我们表明,速率方程模型预测的稳态表面h丰度,其中包括H原子相遇解吸与更严格的显微镜蒙特卡洛方法的结果相当吻合。对于完整的气体元素模型,H原子遇到的解吸可以减少表面h的丰度。因此,如果模型采用H原子的相遇解吸,那么甲醇等氢化产物的形成变得更加困难,但是C,O和N原子在谷物表面上彼此之间相互结合更容易。

At low temperatures (10 K), hydrogen atoms can diffuse quickly on grain ice mantles and frequently encounter hydrogen molecules, which cover a notable fraction of grain surface. The desorption energy of H atoms on H2 substrates is much less than that on water ice. The H atom encounter desorption mechanism is adopted to study the enhanced desorption of H atoms on H2 substrates. Using a small reaction network, we show that the steady-state surface H abundances predicted by the rate equation model that includes H atom encounter desorption agree reasonably well with the results from the more rigorous microscopic Monte Carlo method. For a full gas-grain model, H atom encounter desorption can reduce surface H abundances. Therefore, if a model adopts the encounter desorption of H atoms, it becomes more difficult for hydrogenation products such as methanol to form, but it is easier for C, O and N atoms to bond with each other on grain surfaces.

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