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Polar cap mesosphere wind observations: comparisons of simultaneous measurements with a Fabry-Perot interferometer and a field-widened Michelson interferometer

机译:极帽中层风观测:使用Fabry-Perot干涉仪和大范围迈克尔逊干涉仪同时进行测量的比较

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Polar cap mesospheric winds observed with a Fabry-Perot interferometer with a circle-to-line interferometer optical (FPI/CLIO) system have been compared with measurements from a field-widened Michelson interferometer optimized for E-region winds (ERWIN). Both instruments observed the Meinel OH emission emanating from the mesopause region (~86 km) at Resolute Bay, Canada (74.9 °N, 94.9 °W). This is the first time, to our knowledge, that winds measured simultaneously from a groundbased Fabry-Perot interferometer and a ground-based Michelson interferometer have been compared at the same location. The FPI/CLIO and ERWIN instruments both have a capability for high temporal resolution (less than 10 min for a full scan in the four cardinal directions and the zenith). Statistical comparisons of hourly mean winds for both instruments by scatterplots show excellent agreement, indicating that the two optical techniques provide equivalent observations of mesopause winds. Small deviations in the measured wind can be ascribed to the different zenith angles used by the two instruments. The combined measurements illustrate the dominance of the 12-h wave in the mesopause winds at Resolute Bay, with additional evidence for strong gravity wave activity with much shorter periods (tens of minutes). Future operations of the two instruments will focus on observation of complementary emissions, providing a unique passive optical capability for the determination of neutral winds in the geomagnetic polar cap at various altitudes near the mesopause.
机译:使用具有圆到线干涉仪光学(FPI / CLIO)系统的Fabry-Perot干涉仪观察到的极帽中层风,与针对E区域风(ERWIN)进行了优化的宽视场迈克尔逊干涉仪的测量结果进行了比较。两种仪器都观测到了来自加拿大坚毅湾(74.9°N,94.9°W)的更年期地区(〜86 km)的梅尼尔OH排放。据我们所知,这是首次在同一位置比较了从地面法布里-珀罗干涉仪和地面迈克尔逊干涉仪同时测得的风。 FPI / CLIO和ERWIN仪器都具有高时间分辨率的能力(对于四个基本方向和天顶进行全面扫描,不到10分钟)。散点图对两种仪器的每小时平均风的统计比较显示出极好的一致性,表明这两种光学技术提供了对更年期风的等效观测。测得的风的微小偏差可归因于两种仪器使用的不同天顶角。组合的测量结果说明了在Resolute Bay的中绝经风中12 h波的优势,并具有更短的周期(数十分钟)的强烈重力波活动的其他证据。这两台仪器的未来操作将集中于观测互补发射,从而提供独特的无源光学功能,用于确定中绝经附近各个高度的地磁极帽中的中性风。

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