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Resolving the strange behavior of extraterrestrial potassium in the upper atmosphere

机译:解决高层大气中外星钾的奇怪行为

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摘要

It has been known since the 1960s that the layers of Na and K atoms, which occur between 80 and 105 km in the Earth's atmosphere as a result of meteoric ablation, exhibit completely different seasonal behavior. In the extratropics Na varies annually, with a pronounced wintertime maximum and summertime minimum. However, K varies semiannually with a small summertime maximum and minima at the equinoxes. This contrasting behavior has never been satisfactorily explained. Here we use a combination of electronic structure and chemical kinetic rate theory to determine two key differences in the chemistries of K and Na. First, the neutralization of K+ ions is only favored at low temperatures during summer. Second, cycling between K and its major neutral reservoir KHCO3 is essentially temperature independent. A whole atmosphere model incorporating this new chemistry, together with a meteor input function, now correctly predicts the seasonal behavior of the K layer.
机译:自1960年代以来就知道,由于大气消融而出现在地球大气中80至105千米之间的Na和K原子层表现出完全不同的季节性行为。在温带地区,钠每年变化,冬季明显最大,夏季最小。但是,K每半年变化一次,夏季最大值较小,而春分点处最小值。从未令人满意地解释这种对比行为。在这里,我们结合使用电子结构和化学动力学速率理论来确定K和Na化学上的两个关键差异。首先,仅在夏季低温下才倾向于中和K +离子。其次,在K及其主要中性储层KHCO3之间循环基本上与温度无关。结合了这种新化学作用的整体大气模型以及流星输入函数现在可以正确预测K层的季节性行为。

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