FEATURES OF IONOSPHERIC EFFECTS FROM THE PARTIAL SOLAR ECLIPSE OVER THE CITY OF KHARKIV ON 10 JUNE 2021

Q4 Physics and Astronomy
L. Chernogor, K. Garmash, Y. Zhdanko, S. G. Leus, Y. Luo
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引用次数: 6

Abstract

Purpose: Solar eclipses pertain to high-energy sources of disturbance in the subsystems of the Sun–interplanetary-medium–magnetosphere–ionosphere–atmosphere–Earth and the Earth–atmosphere–ionosphere–magnetosphere systems. During the solar eclipse, the coupling between the subsystems in these systems activates, and the parameters of the dynamic processes become disturbed. Investigation of these processes contributes to understanding of the structure and dynamics of the subsystems. The ionospheric response to the solar eclipse depends on the season, local time, magnitude of the solar eclipse, phase of the solar cycle, the observation site, the state of space weather, etc. Therefore, the study of the effects, which each new solar eclipse has on the ionosphere remains an urgent geophysics and radio physics problem. The purpose of this paper is to describe the radio wave characteristics and ionospheric parameters, which accompanied the partial solar eclipse of 10 June 2021 over the City of Kharkiv. Design/methodology/approach: To make observations, the means of the HF Doppler measurements at vertical and oblique incidence available at the V. N. Karazin Kharkiv National University Radiophysical Observatory were employed. The data obtained at the “Lviv” Magnetic Observatory were used for making intercomparison. Findings: The radiophysical observations have been made of the dynamic processes acting in the ionosphere during the solar eclipse of 10 June 2021 and on the reference days. The temporal variations in the Doppler frequency shift observed at vertical and oblique radio paths have been found to be, as a whole, similar. Generally speaking, the Doppler spectra over these radio propagation paths were different. Over the oblique radio paths, the number of rays was greater. The solar eclipse was accompanied by wave activity enhancement in the atmosphere and ionosphere. At least three wave trains were observed. The values of the periods (about 5–12 min) and the relative amplitudes of perturbations in the electron density (δN≈0.3–0.6 %) give evidence that the wave disturbances were caused by atmospheric gravity waves. The amplitude of the 6–8-min period geomagnetic variations has been estimated to be 0.5–1 nT. Approximately the same value has been recorded in the X component of the geomagnetic field at the nearest Magnetic Observatory. The aperiodic effect of the solar eclipse has appeared to be too small (less than 0.01 Hz) to be observed confidently. The smallness of the effect was predetermined by an insignificant magnitude of the partial eclipse over the City of Kharkiv (no more than 0.11). Conclusions: The features of the solar eclipse of 10 June 2021 include an insignificant magnitude of the aperiodic effect and an enhancement in wave activity in the atmosphere and ionosphere. Key words: solar eclipse; ionosphere; Doppler spectrum; Doppler frequency shift; electron density; geomagnetic field; atmospheric gravity wave
2021年6月10日哈尔科夫日偏食的电离层效应特征
目的:日食涉及太阳-行星际介质-磁层-电离层-大气层-地球和地球-大气层-电离层-磁层系统子系统中的高能扰动源。在日食期间,这些系统中的子系统之间的耦合激活,动态过程的参数受到干扰。对这些过程的研究有助于理解子系统的结构和动力学。电离层对日食的反应取决于季节、当地时间、日食的震级、太阳周期的相位、观测地点、空间天气状况等。因此,研究每一次新日食对电离层的影响仍然是一个紧迫的地球物理和无线电物理问题。本文的目的是描述2021年6月10日哈尔科夫市日偏食期间的无线电波特征和电离层参数。设计/方法/方法:为了进行观测,采用了V·N·卡拉津-哈尔科夫国立大学放射物理天文台提供的垂直和斜入射高频多普勒测量方法。在“利沃夫”磁力观测站获得的数据用于进行相互比较。研究结果:对2021年6月10日日食期间和参考日电离层中的动态过程进行了放射物理观测。在垂直和倾斜无线电路径上观察到的多普勒频移的时间变化已被发现作为一个整体是相似的。一般来说,这些无线电传播路径上的多普勒频谱是不同的。在倾斜的无线电路径上,射线的数量更多。日食伴随着大气和电离层中的波动活动增强。至少观测到三列波浪。周期值(约5–12分钟)和电子密度扰动的相对振幅(δN≈0.3–0.6%)表明,波扰动是由大气重力波引起的。6–8分钟周期地磁变化的振幅估计为0.5–1 nT。在最近的地磁观测站,地磁场的X分量记录到了大致相同的值。日食的非周期性影响似乎太小(小于0.01赫兹),无法自信地观察到。哈尔科夫市上空的日偏食震级不显著(不超过0.11)决定了这种影响的微小性。结论:2021年6月10日日食的特征包括非周期性影响的震级不显著,以及大气和电离层中的波活动增强。关键词:日食;电离层;多普勒频谱;多普勒频移;电子密度;地磁场;重力波
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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