Impact of Coronal Mass Ejection on different characteristic parameters of lower thermospheric region

S. Paul, S. S. De
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Abstract

Protons, electrons, alpha particles, and heavier ions in the solar wind are emitted from the Sun’s coronal plasma. Energetic phenomenon such as a Coronal Mass Ejection (CME) releases high energy as electromagnetic radiation in the form of solar X-rays and γ-ray bursts. This intense radiation is responsible for ionizing the constituent particles of the various layers of Earth’s ionosphere. In the presence of perturbations of the thermospheric region produced by CME, different characteristic parameters are theoretically investigated through momentum and energy balance equations, equation of continuity and equation of state. Dispersive nature of the medium is investigated and altitude variations of resulting electric field are carried out. In the computation processes, data of the latest International Reference Ionosphere (IRI) models are used. The results obtained are to be compared and supported by the experimental findings from other researchers to understand the nature of the medium in detail.
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日冕物质抛射对低层热层不同特征参数的影响
太阳风中的质子、电子、α粒子和较重的离子都是从太阳的日冕等离子体中释放出来的。高能现象,如日冕物质抛射(CME)以太阳x射线和γ射线爆发的形式释放出高能量的电磁辐射。这种强烈的辐射使地球电离层各层的组成粒子电离。在CME产生的热层扰动存在的情况下,通过动量和能量平衡方程、连续性方程和状态方程对不同的特征参数进行了理论研究。研究了介质的色散性质,并对产生的电场进行了高度变化。在计算过程中,使用了最新的国际参考电离层(IRI)模型的数据。得到的结果将与其他研究人员的实验结果进行比较和支持,以详细了解介质的性质。
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