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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Attenuation of whistler waves through conversion to lower hybrid waves in the low-altitude ionosphere
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Attenuation of whistler waves through conversion to lower hybrid waves in the low-altitude ionosphere

机译:在低空电离层中通过转换为低杂波来减弱惠斯勒波

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VLF waves excited by powerful ground-based transmitters propagate in the Earth-ionosphere waveguide and leak through the ionosphere to the magnetosphere, where they are often recorded by satellites. Simulations of the propagation of whistler waves using coupled transionospheric VLF propagation and three-dimensional ray-tracing models have shown systematic overestimates of the VLF wavefield strength near 20 kHz in the magnetosphere by about 20 dB in the night and 10 dB during the day. The paper presents numerical simulations of the conversion between whistler and lower hybrid waves interactions in the presence of short-scale field-aligned density irregularities (striations) in Earth's lower ionosphere. The simulations, which incorporate a realistic ionospheric density profile, show that the mode conversion of whistler waves to lower hybrid waves leads to significant attenuation of whistler waves at altitudes between 90 and 150 km. The striation width plays an important role in the conversion efficiency between whistler and lower hybrid wave. Uniformly distributed striations with 8 m transverse size result in 15 dB attenuation in the 90-150 km propagation range, while a spectrum from 2 to 10 m results in 9 dB attenuation. It is argued that the attenuation of whistler waves in the presence of short-scale density striations in Earth's ionosphere can account for most of the observed ~20 dB loss in VLF intensity. Furthermore, it predicts that VLF/ELF waves with frequencies below 5 kHz will not suffer similar attenuation.
机译:由强大的地面发射器激发的甚低频波在地球电离层波导中传播,并通过电离层泄漏到磁层,通常由卫星记录。使用耦合的电离层VLF传播和三维射线追踪模型对吹口哨声波的传播进行的仿真显示,磁层中20 kHz附近的VLF波场强度被系统高估了,夜间被高估了20 dB,白天被高估了10 dB。本文介绍了在地球下部电离层中存在短尺度场对准密度不规则(条纹)的情况下,吹口哨声和下部杂波相互作用之间转换的数值模拟。包含真实电离层密度分布的模拟结果表明,在90至150 km的海拔高度上,惠斯勒波向较低混合波的模式转换会导致显着衰减。条纹宽度在哨声和较低杂波之间的转换效率中起重要作用。宽度为8 m的均匀分布的条纹在90-150 km的传播范围内会导致15 dB的衰减,而从2到10 m的频谱会导致9 dB的衰减。有人认为,在地球电离层中存在短尺度密度条纹的情况下,惠斯勒波的衰减可以解释所观测到的VLF强度中约20 dB的大部分损耗。此外,它预测频率低于5 kHz的VLF / ELF波将不会遭受类似的衰减。

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