Modelling of the electron density profile in the lowest part of ionosphere D-region on the basis of radiowave absorption data: 2. Seasonal variations

Pl. Mukhtarov, D. Pancheva
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Abstract

A new model of the lowest part of the D-region is obtained by a trial-and-error inversion method. Its basic feature is a step-like transition between 55 and 70 km which is not depicted in most ionospheric models. The seasonal differences of this are considered to be quite important: the bottom of the ionsphere is found to be lower in summer and spring, the gradient of the profile below the CR-layer is stronger in winter, and a well defined ‘valley’ exists around 70 km in spring. By simulating the ionospheric response to a, solar flare (SID-effect) in summer and in winter, an attempt was made to verify the obtained seasonal peculiarities of the quiet ionosphere.

基于无线电波吸收数据的电离层d区最低部分电子密度分布模拟:季节性的变化
采用试错反演方法,得到了d区最低部分的新模型。它的基本特征是55至70公里之间的阶梯状过渡,这在大多数电离层模型中没有描述。这种季节性差异被认为是相当重要的:发现电离层底部在夏季和春季较低,cr层以下剖面的梯度在冬季较强,春季在70公里左右存在一个明确的“山谷”。通过模拟夏季和冬季电离层对太阳耀斑(sid效应)的响应,试图验证所获得的平静电离层的季节特性。
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