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D-Region High-Latitude Forcing Factors

机译:d层高纬度迫使因素

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摘要

The subionospheric very low frequency (VLF) radio wave technique provides the possibility of investigating the response of the ionospheric D-region to a diversity of transient and long-term physical phenomena originating from above (e.g., energetic particle precipitation) and from below (e.g., atmospheric waves). In this study, we identify the periodicities that appear in VLF measurements and investigate how they may be related to changes in space weather and atmospheric activity. The powerful VLF signal transmitted from NAA (24 kHz) on the east coast of the United States, and received at Sodankyl?, Finland, was analyzed. Wavelet transform, wavelet power spectrum, wavelet coherence, and cross-wavelet spectrum were computed for daily averages of selected ionospheric, space weather, and atmospheric parameters from November 2008 until June 2018. Our results show that the significant VLF periods that appear during solar cycle 24 are the annual oscillation, semiannual oscillation, 121-day, 86-day, 61-day, and solar rotation oscillations. We found that the annual oscillation corresponds to variability in mesospheric temperature and solar Lyman-α (Ly-α) flux and the semiannual oscillation to variability in space weather-related parameters. The solar rotation oscillation observed in the VLF variability is mainly related to the Ly-α flux variation at solar maximum and to geomagnetic activity variation during the declining phase of the solar cycle. Our results are important since they strengthen our understanding of the Earth's D-region response to solar and atmospheric forcing.
机译:subionospheric非常低的频率(甚低频)收音机波技术提供的可能性研究电离层的反应瞬态的多样性和d层长期的物理现象源自(例如,高能粒子沉淀)从下面(如大气波)。研究中,我们确定出现的周期的研究在甚低频测量和调查他们如何可能对空间天气变化有关大气活动。从NAA(24千赫)在东海岸美国,在Sodankyl收到了吗?芬兰,进行了分析。功率谱、小波相干和每天cross-wavelet光谱计算了平均的电离层空间天气,从2008年11月和大气参数直到2018年6月。在太阳能重要甚低频时期出现的一年一度的振荡周期24,半年振荡、121天、86天、61天,和太阳能旋转振荡。振动对应变化中间层温度和太阳能莱曼-α(Ly -α)通量和半年度振荡在空间变化与天气有关的参数。太阳能旋转振荡中观察到甚低频可变性Ly -α主要相关在太阳能最大和通量变化在地磁活动变化太阳活动周期的下降阶段。是重要的因为他们加强我们的吗理解地球d层的响应太阳能和大气强迫。

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