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Numerical and observational study of ion layer formation at Arecibo

机译:阿雷西博离子层形成的数值和观测研究

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Ion layer formation is a manifestation of the complex physical and chemical processes in the ionosphere. This study explores how tidal winds, ambipolar diffusion, meteoric ablation and lower ionospheric chemistry contribute to the vertical distribution of metallic ions. In this paper, we develop a one-dimensional model to understand the time-dependent distributions of metallic ions from 80 to 150 km. This paper focuses on the effect of ambipolar diffusion, which has been neglected in previous studies. Ambipolar diffusion greatly reduces the peak density of layers above 120 km and broadens the layer width below 120 km. Furthermore, we present the layer trajectory and layer width results using data conducted from Arecibo incoherent scatter radar data.
机译:离子层的形成是电离层中复杂的物理和化学过程的体现。这项研究探索了潮汐风,双极性扩散,流星消融和较低的电离层化学作用如何促进金属离子的垂直分布。在本文中,我们开发了一个一维模型来了解80至150 km范围内金属离子的时间依赖性分布。本文着重于双极性扩散的影响,这在先前的研究中已被忽略。双极扩散大大降低了120 km以上层的峰值密度,并加宽了120 km以下层的宽度。此外,我们使用从Arecibo非相干散射雷达数据进行的数据来显示层轨迹和层宽度结果。

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