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Local impact of solar variation on NO2 in the lower mesosphere and upper stratosphere from 2007 to 2012

机译:2007年至2012年较低介质圈层和上层影层中NO2对太阳能变化的局部影响

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MIPAS/ENVISAT data of nighttime NO2 volume mixing ratios (VMR) from 2007 until 2012 between 40 km and 62 km altitude are compared with the geomagnetic Ap index and solar Lyman-α radiation. The local impact of variations in geomagnetic activity and solar radiation on the VMR of NO2 in the lower mesosphere and upper stratosphere in the Northern Hemisphere is investigated by means of superposed epoch analysis. Observations in the Northern Hemisphere show a clear 27-day period of the NO2 VMR. This is positively correlated with the geomagnetic Ap index at 60–70° N geomagnetic latitude but also partially correlated with the solar Lyman-α radiation. However, the dependency of NO2 VMR on geomagnetic activity can be distinguished from the impact of solar radiation. This indicates a direct response of NOx (NO + NO2) to geomagnetic activity, probably due to precipitating particles. The response is detected in the range between 46 km and 52 km altitude. The NO2 VMR epoch maxima due to geomagnetic activity is altitude-dependent and can reach up to 0.4 ppb, leading to mean production rates of 0.029 ppb (Ap d)?1. Observations in the Southern Hemisphere do not have the same significance due to a worse sampling of geomagnetic storm occurances. Variabilities due to solar variation occur at the same altitudes at 60–70° S geomagnetic latitude but cannot be analyzed as in the Northern Hemisphere. This is the first study showing the direct impact of electron precipitation on NOx at those altitudes in the spring/summer/autumn hemisphere.
机译:与Geomagnetic AP指数和太阳能Lyman-α辐射相比,2007年夜间NO2卷混合比率(VMR)的MIPAS / Envisat数据与2007年至2012年间高度。通过叠加的时期分析研究了北半球较低介体圈层和上层圈和上层影子VMR的局部对NO2 VMR的局部影响。北半球的观察结果显示了NO2 VMR的明确27天。这与60-70°N的地磁宽度的地磁AP指数正相关,但也与太阳能Lyman-α辐射部分相关。然而,NO 2 VMR对地磁活动的依赖性可以区分太阳辐射的影响。这表明NOx(NO + NO2)的直接反应可能是由于沉淀的颗粒而导致的地磁活动。在46公里和52公里的高度范围内检测到响应。由于地磁活动导致的NO2 VMR时期最大值是高度依赖性的并且可以达到高达0.4ppb,导致平均生产率为0.029ppb(ap d)?1。由于地磁风暴发生的更糟糕的采样,南半球的观察结果与地磁风暴发生的更糟糕的情况没有相同的意义。由于太阳能变化引起的变形性在60-70°S的地磁纬度下发生在相同的高度,但不能像北半球一样分析。这是第一项研究表明电子降水在春季/夏季/秋半球的那些高度上的电子沉淀对NOx的直接影响。

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