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Periodicities of polar cap patches

机译:周期的研究极地冰冠的补丁

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摘要

A highly sensitive all-sky electron multiplier charge-coupled device airglow imager has been operative in Longyearbyen, Norway since October 2011. The imager captures 630.0 nm all-sky images with an exposure time of 4 s, which is about 10 times shorter than that achieved by conventional cooled CCD imagers. This allows us to visualize the structure of polar cap patches without blurring effects and better estimate their periodicities. We present, as one of the first results from the imager, an event of successive appearance of patches on the night of 21 December 2011. A time series of the optical intensity at zenith showed modulations having two distinguished periods, one at 40 min and the other at 5-12 min. One possible explanation is that such a coexistence of two different periodicities is a manifestation of simultaneous occurrence of patch generation processes on the 40 min periodicity was created by large-scale reconfiguration of the dayside convection pattern while the 5-12 min modulations were closely associated with mechanisms driven by pulsed reconnection on the dayside magnetopause. Such a combined effect of multiple patch generation processes may play a role in structuring patches; thus, it would be of particular importance for evaluating the space weather effects in the trans-ionospheric communications environment in the polar cap.
机译:一个高度敏感的全天电子倍增器电荷耦合器件大气光成像手术在朗伊尔城,自去年10月以来挪威2011. 4 s的曝光时间,大概是10比通过常规时间短冷却CCD成像系统。结构的极冠补丁模糊效果和更好地估计周期的研究。从成像结果,连续的事件12月21日晚的补丁2011. 天顶显示调节有两个杰出的时期,一个在40分钟在5 - 12分钟。一种可能的解释这样两种不同的共存周期的研究是一个同步的表现块生成过程的发生40分钟周期是由大规模的重新配置的光面的对流模式在5 - 12分钟调节与脉冲驱动机制重新连接的光面上磁层。结合多个补丁的一代的影响过程可能发挥作用在构建补丁;因此,这将是特别重要的评估的空间天气效应trans-ionospheric通信环境极地冰冠。

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