首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Effective electron recombination coefficient in ionospheric D-region during the relaxation regime after solar flare from February 18, 2011
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Effective electron recombination coefficient in ionospheric D-region during the relaxation regime after solar flare from February 18, 2011

机译:2011年2月18日太阳耀斑后弛豫过程中电离层D区的有效电子复合系数

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摘要

In this paper, we present a model for determination of a weakly time dependent effective recombination coefficient for the perturbed terrestrial ionospheric D-region plasma. We study consequences of a class M1.0 X-ray solar flare, recorded by GOES-15 satellite on February 18, 2011 between 14:00 and 14:15 UT, by analyzing the amplitude and phase real time variations of very low frequency (VLF) radio waves emitted by transmitter DHO (located in Germany) at frequency 23.4 kHz and recorded by the AWESOME receiver in Belgrade (Serbia). Our analysis is limited to ionospheric perturbations localized at altitudes around 70 km where the dominant electron gain and electron loss processes are the photo-ionization and recombination, respectively.
机译:在本文中,我们提出了一种确定扰动的地面电离层D区等离子体的弱时间相关有效重组系数的模型。我们通过分析甚低频的幅度和相位实时变化,研究了GOES-15卫星在2011年2月18日UT 14:00至14:15 UT记录的M1.0级X射线太阳耀斑的后果( VLF)由DHO发射器(位于德国)以23.4 kHz的频率发射,并由塞尔维亚贝尔格莱德的AWESOME接收器记录的无线电波。我们的分析仅限于电离层扰动,该扰动局限在70 km左右的高度,其中主要的电子增益和电子损耗过程分别是光电离和复合。

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