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Is there a direct solar proton impact on lower-stratospheric ozone?

机译:是否有直接的太阳能质子撞击较低平流层臭氧?

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We investigate Arctic polar atmospheric ozone responses to solar proton events (SPEs) using MLS (Microwave Limb Sounder) satellite measurements (2004–now) and WACCM-D (Whole Atmosphere Community Climate Model) simulations (1989–2012). Special focus is on lower-stratospheric (10–30km) ozone depletion that has been proposed earlier based on superposed epoch analysis (SEA) of ozonesonde anomalies (up to 10% ozone decrease at ~20km). SEA of the satellite dataset provides no solid evidence of any average SPE impact on the lower-stratospheric ozone, although at the mesospheric altitudes a statistically significant ozone depletion is present. In the individual case studies, we find only one potential case (January 2005) in which the lower-stratospheric ozone level was significantly decreased after the SPE onset (in both model simulation and MLS observation data). However, similar decreases could not be identified in other SPEs of similar or larger magnitude. Due to the input proton energy threshold of 300MeV, the WACCM-D model can only detect direct proton effects above 25km, and simulation results before the Aura MLS era indicate no significant effect on the lower-stratospheric ozone. However, we find a very good overall consistency between WACCM-D simulations and MLS observations of SPE-driven ozone anomalies both on average and for the individual cases including January 2005.
机译:我们调查北极极性大气臭氧对太阳能质子事件(SPE)使用MLS(微波肢体声音)卫星测量(2004年 - 现在)和WACCM-D(全部大气群落气候模型)模拟(1989-2012)来调查太阳能质子事件(SPES)。特别焦点是基于臭氧(ozonesonde异常(高达10%的臭氧降低)的叠加时期分析(海)之前提出的较低平流层(10-30km)臭氧耗尽。卫星数据集的海线不提供对低平型臭氧的任何平均SPE撞击的固体证据,尽管在MESOSHERIC的高度上存在统计学上显着的臭氧耗尽。在个人案例研究中,我们只发现一个潜在的案例(2005年1月),其中在SPE发作后(在模型仿真和MLS观察数据中)后,较低平流层臭氧水平显着降低。然而,在类似或更大幅度的其他SPE中不能识别类似的降低。由于输入质子能量阈值为300mev,WACCM-D模型只能检测25km以上的直接质子效应,并且在Aura MLS ERA表明对下层臭气臭氧没有显着影响之前的仿真结果。然而,我们在平均水平和2005年1月的个人案件中找到了WACCM-D模拟和MLS观察的非常好的整体一致性。

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