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首页> 外文期刊>Astrophysics and space science >Theoretical study of lower ionospheric response to solar flares: sluggishness of D-region and peak time delay
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Theoretical study of lower ionospheric response to solar flares: sluggishness of D-region and peak time delay

机译:电离层对太阳耀斑的较低响应的理论研究:D区域的迟滞和峰值时间延迟

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摘要

The rates of ion production and loss processes in the lower ionosphere during solar and other astronomical ionizing events vary with height. This variations influence the time lags of the response in different ionospheric layers. Very Low Frequency (VLF) signals reflected from any of these layers follow this time lag or delay during a transient cosmic events. One of the easiest ways to study this property is to observe the shift in the peak of VLF signal amplitude with respect to the peak of solar flares. We numerically model to find ion densities and resulting VLF signal perturbations during some solar flares. We clearly find from the model that the delay in the peak of the electron densities (with respect to peak of the ionizing event) in the lower ionosphere varies from height to height. The result also depends on the properties of events, such as peak intensity and sharpness. We investigate analytically how the delay of electron density peak should depend on height varying chemical rate parameters as well as the nature of transient events. Our capability is demonstrated using three classes (namely, X, M and C) of solar flares. The work is a step forward in our goal to employ ionosphere as a natural detector for astronomical observations.
机译:在太阳和其他天文电离过程中,电离层下部的离子产生和损失过程的速率随高度而变化。这种变化会影响不同电离层中响应的时滞。从这些层中的任何一层反射的甚低频(VLF)信号在瞬变宇宙事件期间都遵循此时间滞后或延迟。研究此特性的最简单方法之一是观察VLF信号幅度的峰值相对于太阳耀斑峰值的变化。我们通过数值建模来找到某些太阳耀斑期间的离子密度和由此产生的VLF信号扰动。从模型中我们清楚地发现,下部电离层中电子密度峰值的延迟(相对于电离事件的峰值)随高度的变化而变化。结果还取决于事件的属性,例如峰值强度和清晰度。我们分析地研究电子密度峰的延迟应如何取决于高度变化的化学速率参数以及瞬态事件的性质。我们使用三类太阳耀斑(即X,M和C)来证明我们的能力。这项工作是我们实现电离层作为天文观测天然探测器的目标的又一步。

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