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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >Horizontal ionospheric electron density gradients observed by FORMOSAT-3/COSMIC TIP: Spatial distributions and effects on VLF wave propagation at mid-latitudes
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Horizontal ionospheric electron density gradients observed by FORMOSAT-3/COSMIC TIP: Spatial distributions and effects on VLF wave propagation at mid-latitudes

机译:FORMOSAT-3 / COSMIC TIP观测到的水平电离层电子密度梯度:中纬度的空间分布及其对VLF波传播的影响

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We investigate the spatial variability of electron densities in the nightside ionosphere and its effects on very-low frequency (VLF) wave propagation using a suite of instruments from the FORMOSAT-3/Constellation Observing System for Meteorology Ionosphere and Climate (COSMIC) spacecraft. We use observations from the Tiny Ionospheric Photometer (TIP) instruments to infer the horizontal electron density gradients along each satellite track. We demonstrate that the 01 1356 ? radiance measured by the TIP instruments tracks the horizontal electron density structure well with high spatial resolution and unprecedented sensitivity. Accurate measurements of the horizontal electron density gradients are important for improving retrieved electron density profiles from GPS occultation and other tomographic remote sensing techniques. The processes underlying the variability in the large-scale. nightside electron density gradients are the main drivers of ionospheric weather. TIP observations reveal significant variability in both the small and large scale structure of the nightside ionosphere. The relative intensities. relative widths. and latitudinal separation of the northern and southern ionization crests of the Appleton anomalies show a high degree of longitudinal variation. We demonstrate how the TIP observations can be used to measure the horizontal gradient of the refractive index of whistler-mode VLF waves propagating in a cold. collisionless plasma. These measurements are critical for understanding how gradients in electron density associated with ionospheric structure such as depletions and the Appleton anomalies affect VLF wave propagation through the equatorial and mid-latitude ionosphere.
机译:我们使用FORMOSAT-3 /星座电离层和气象观测系统的一套仪器,研究了夜间电离层中电子密度的空间变异性及其对甚低频(VLF)波传播的影响。我们使用微小电离层光度计(TIP)仪器的观测值来推断沿每个卫星轨道的水平电子密度梯度。我们证明01 1356吗? TIP仪器测得的辐射亮度很好地跟踪了水平电子密度结构,具有很高的空间分辨率和前所未有的灵敏度。水平电子密度梯度的准确测量对于改善从GPS掩星法和其他层析成像遥感技术获得的电子密度分布图非常重要。大规模可变性的基础过程。夜间电子密度梯度是电离层天气的主要驱动力。 TIP观测显示,在夜间电离层的小规模和大规模结构中,都存在明显的变异性。相对强度。相对宽度。阿普尔顿异常的南北离子峰的纬向和纬向分离显示出高度的纵向变化。我们演示了如何将TIP观测值用于测量在寒冷中传播的吹口哨模式VLF波的折射率的水平梯度。无碰撞等离子体。这些测量对于理解与电离层结构(例如耗尽和Appleton异常)相关的电子密度梯度如何影响通过赤道和中纬度电离层的VLF波传播至关重要。

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