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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Role of excited N_2 in the production of nitric oxide
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Role of excited N_2 in the production of nitric oxide

机译:角色的兴奋甲烷、氮的生产氧化

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Excited N2 plays a role in a number of atmospheric processes, including auroral and dayglow emissions, chemical reactions, recombination of free electrons, and the production of nitric oxide. Electron impact excitation of N2 is followed by radiative decay through a series of excited states, contributing to auroral and dayglow emissions. These processes are intertwined with various chemical reactions and collisional quenching involving the excited and ground state vibrational levels. Statistical equilibrium and time step atmospheric models are used to predict N2 excited state densities and emissions (as a test against previous models and measurements) and to investigate the role of excited nitrogen in the production of nitric oxide. These calculations predict that inclusion of the reaction N2[A3Σu +] + O, to generate NO, produces an increase by a factor of up to three in the calculated NO density at some altitudes.
机译:兴奋的N2的大气中扮演了重要的角色流程,包括极光和dayglow排放,化学反应,复合的自由电子和硝酸的生产氧化物。其次是通过一系列的辐射衰变激发态,造成极光dayglow排放。与各种化学反应和交织在一起碰撞引起的淬火和兴奋的涉及基态振动水平。平衡和时间步大气模型用来预测N2激发态密度和(作为一个测试以前的模型和排放测量)和调查的作用兴奋的氮在氮的生产氧化物。反应的N2 (A3Σu +) + O,生成不,产生增加三倍在一些海拔没有计算密度。

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