首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Atmosphere-Ionosphere (A-I) Coupling as Viewed by ICON: Day-to-Day Variability Due to Planetary Wave (PW)-Tide Interactions
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Atmosphere-Ionosphere (A-I) Coupling as Viewed by ICON: Day-to-Day Variability Due to Planetary Wave (PW)-Tide Interactions

机译:作为被Atmosphere-Ionosphere(ⅰ)耦合由于行星图标:日常可变性波(PW)潮流相互作用

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Coincident Ionospheric Connections Explorer (ICON) measurements of neutral winds, plasma drifts and total ion densities (:=Ne, electron density) are analyzed during January 1-21, 2020 to reveal the relationship between neutral winds and ionospheric variability on a day-to-day basis. Atmosphere-ionosphere (A-I) connectivity inevitably involves a spectrum of planetary waves (PWs), tides and secondary waves due to wave-wave nonlinear interactions. To provide a definitive attribution of dynamical origins, the current study focuses on a time interval when the longitudinal wave-4 component of the E-region winds is dominated by the eastward-propagating diurnal tide with zonal wavenumber s =-3 (DE3). DE3 is identified in winds and ionospheric parameters through its characteristic dependence on local solar time and longitude as ICON's orbit precesses. Superimposed on this trend are large variations in low-latitude DE3 wave-4 zonal winds (±40 ms~(-1)) and topside F-region equatorial vertical drifts at periods consistent with 2-days and 6-days PWs, and a ~3-day ultra-fast Kelvin wave (UFKW), coexisting during this time interval; the DE3 winds, dynamo electric fields, and drifts are modulated by these waves. Wave-4 variability in Ne is of order 25%-35%, but the origins are more complex, likely additionally reflecting transport by ~20-25 ms~(-1) wave-4 in-situ winds containing strong signatures of DE3 interactions with ambient diurnal Sun-synchronous winds and ion drag. These results are the first to show a direct link between day-to-day wave-4 variability in contemporaneously measured E-region neutral winds and F-region ionospheric drifts and electron densities.
机译:重合的电离层连接Explorer(图标)测量的中性风,等离子体漂移总离子密度(:= Ne,电子密度)分析了在2020年1月1日到21日,揭示了中性风和之间的关系电离层的变化在日常的基础上。Atmosphere-ionosphere(ⅰ)连接不可避免地涉及到行星波的频谱(PWs),潮汐和二级波由于波波非线性相互作用。归因动力的起源,目前研究关注的时间间隔纵向wave-4 E-region的组件风eastward-propagating为主全日潮与纬向波数s = 3 (DE3)。在风和电离层DE3标识通过其特征参数依赖在当地太阳时和经度图标的轨道进动。变化在低纬度DE3 wave-4纬向风(±40 ms ~(1))和上部F-region赤道垂直漂移时间符合2天和浆,6天~ 3天超高速开尔文波(UFKW)共存时间间隔;并由这些波调制。可变性在东北的25% - -35%,但起源更复杂,可能另外反映运输~ ~ (1)wave-4女士20 - 25现场风包含强烈的DE3签名与环境的交互昼夜与太阳同步风和离子拖动。日常wave-4显示之间的直接联系变化同时测量E-region中性风和F-region电离层和电子密度。

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