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The Meteoric Ni Layer in the Upper Atmosphere

机译:流星的镍层在高层大气中

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The first global atmospheric model of Ni (WACCM-Ni) has been developed to understand recent observations of the mesospheric Ni layer by ground-based resonance lidars. The three components of the model are: the Whole Atmospheric Community Climate Model (WACCM6); a meteoric input function derived by coupling an astronomical model of dust sources in the solar system with a chemical meteoric ablation model; and a comprehensive set of neutral, ion-molecule, and photochemical reactions pertinent to the chemistry of Ni in the upper atmosphere. In order to achieve closure on the chemistry, the reaction kinetics of three important reactions were first studied using a fast flow tube with pulsed laser ablation of aNi target, yielding k(NiO + O) = (4.6 ± 1.4) × 10~(-11), k(NiO + CO) = (3.0 ± 0.5) × 10~(-11), and k(NiO_2 + O) = (2.5 ± 1.2) × 10~(-11) cm~3 molecule~(-1) s~(-1) at 294 K. The photodissociation rate of NiOH was computed to be J(NiOH) = 0.02 s~(-1). WACCM-Ni simulates satisfactorily the observed neutral Ni layer peak height and width, and Ni~+ measurements from rocket-borne mass spectrometry. The Ni layer is predicted to have a similar seasonal and latitudinal variation as the Fe layer, and its unusually broad bottom-side compared with Fe is caused by the relatively fast NiO + CO reaction. The quantum yield for photon emission from the Ni + O_3 reaction, observed in the nightglow, is estimated to be between 6% and 40%.
机译:倪的第一个全球大气模型(WACCM-Ni)开发的理解最近的观察的中间层镍层通过地面共振激光雷达。组件的模型是:整体大气社区气候模型(WACCM6);一个流星的输入函数导出了耦合在太阳天文模型的尘埃来源系统化学飞速消融模型;和一组全面的中性离子分子,和相关的光化学反应化学镍的上层大气。实现关闭在化学反应三个重要的动力学反应是第一位研究了使用一个快速流和脉冲激光管消融的aNi目标,产生k (NiO + O) =(4 5±1。4)×10 ~ (-11),k (+ CO) =(3 . 0±0 . 5)10 ~(-11)厘米~ 3分子~(1)~(1)在294 K。光离解NiOH被计算J (NiOH) = 0.02 s ~(- 1)。令人满意地观察中性镍层峰高度和宽度,倪~ +测量火箭携带的质谱分析。一个类似的季节性和预测纬度变化的铁层,其异常广泛的底边与铁相比由较快NiO + CO的反应引起的。从倪光子发射的量子产率nightglow + O_3反应,观察到,估计在6%和40%之间。

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