Kalogerakis Konstantinos S, Matsiev Daniel, Cosby Philip C, Dodd James A, Falcinelli Stefano, Hedin Jonas, Kutepov Alexander A, Noll Stefan, Panka Peter A, Romanescu Constantin, Thiebaud Jérôme E
Center for Geospace Studies, SRI International, Menlo Park, California, USA.
formerly at: Molecular Physics Laboratory, SRI International, Menlo Park, California, USA.
Ann Geophys. 2018;36(1):13-24. doi: 10.5194/angeo-36-13-2018. Epub 2018 Jan 9.
The question of whether mesospheric OH() rotational population distributions are in equilibrium with the local kinetic temperature has been debated over several decades. Despite several indications for the existence of non-equilibrium effects, the general consensus has been that emissions originating from low rotational levels are thermalized. Sky spectra simultaneously observing several vibrational levels demonstrated reproducible trends in the extracted OH() rotational temperatures as a function of vibrational excitation. Laboratory experiments provided information on rotational energy transfer and direct evidence for fast multi-quantum OH(high-) vibrational relaxation by O atoms. We examine the relationship of the new relaxation pathways with the behavior exhibited by OH() rotational population distributions. Rapid OH(high-) + O multi-quantum vibrational relaxation connects high and low vibrational levels and enhances the hot tail of the OH(low-) rotational distributions. The effective rotational temperatures of mesospheric OH() are found to deviate from local thermodynamic equilibrium for all observed vibrational levels.
中层大气OH()转动布居分布是否与当地动力学温度处于平衡状态的问题已经争论了几十年。尽管有若干迹象表明存在非平衡效应,但普遍的共识是,源自低转动能级的发射是热化的。同时观测多个振动能级的天空光谱显示,提取的OH()转动温度随振动激发呈现出可重复的趋势。实验室实验提供了关于转动能量转移的信息,并直接证明了O原子对OH(高)的快速多量子振动弛豫。我们研究了新的弛豫途径与OH()转动布居分布所表现出的行为之间的关系。快速的OH(高)+O多量子振动弛豫连接了高、低振动能级,并增强了OH(低)转动分布的热尾。对于所有观测到的振动能级,发现中层大气OH()的有效转动温度偏离了局部热力学平衡。