ELECTROMAGNETIC EFFECTS OF ACOUSTIC AND ATMOSPHERIC GRAVITY WAVES IN THE NEAR-EARTH ATMOSPHERE

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2020-12-02 DOI:10.15407/rpra25.04.290
Y. Luo, L. Chernogor
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Abstract

Purpose: Acoustic and atmospheric gravity waves (AAGW) are generated by many natural and anthropogenic sources. The AAGW propagation at ionospheric heights is accompanied by the generation of disturbances in the magnetic and electric fields. The plasma presence plays a crucial role. The mechanisms for generating electrical and magnetic disturbances in the near-Earth atmosphere by the AAGW have been studied much worse. Therefore, the validation of the capability to generate electromagnetic disturbances in the near-Earth atmosphere by the AAGW is an urgent problem. The purpose of this paper is to describe the mechanism for generating disturbances in the electric and magnetic fields in the near-Earth atmosphere under the action of AAGW and to estimate the amplitudes of these disturbances for various AAGW sources. Design/methodology/approach: The impact of a series of highenergy sources often results in the generation of synchronous disturbances in the acoustic and geoelectric (atmospheric) fields, when an approximate proportionality between the pressure amplitude and the amplitude of the disturbances in the atmospheric electric field is observed to occur. Based on the observational data and making use of the Maxwell equations, the theoretical estimates of the disturbances in the electric and magnetic fields have been obtained. Findings: Simplified expressions have been obtained for estimating the amplitudes of the electric and magnetic fields under the action of the AAGW generated by natural and manmade sources. The amplitudes of the electric and magnetic fields generated by the AAGW of natural and manmade origin, which travel in the near-Earth atmosphere, have been calculated. The amplitudes of the AAGW generated electric and magnetic fields are shown to be large enough to be detected with the existing electrometers and fluxmeter magnetometers. The magnitudes of the amplitudes of the electric and magnetic fields generated in the near-Earth atmosphere under the action of AAGW are large enough to trigger coupling between the subsystems in the Earth–atmosphere–ionosphere–magnetosphere system. Conclusions: The estimates and not numerous observations are in good agreement. Key words: acoustic and atmospheric gravity waves, near-Earth atmosphere, volume charge, atmospheric pressure disturbances, electric field, magnetic field
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近地大气中声波和大气重力波的电磁效应
目的:声波和大气重力波(AAGW)是由许多自然和人为来源产生的。AAGW在电离层高度的传播伴随着磁场和电场中的扰动的产生。等离子体的存在起着至关重要的作用。AAGW在近地大气中产生电和磁扰动的机制研究得更糟。因此,验证AAGW在近地大气中产生电磁干扰的能力是一个紧迫的问题。本文的目的是描述在AAGW的作用下,近地大气中电场和磁场产生扰动的机制,并估计各种AAGW源的这些扰动的振幅。设计/方法/方法:当观测到大气电场中的压力振幅和扰动振幅之间近似成比例时,一系列高能源的影响通常会导致在声和地电(大气)场中产生同步扰动。根据观测数据,利用麦克斯韦方程组,得到了电场和磁场扰动的理论估计。研究结果:已经获得了估算自然和人造源产生的AAGW作用下电场和磁场振幅的简化表达式。已经计算了在近地大气层中传播的自然和人造来源的AAGW产生的电场和磁场的振幅。AAGW产生的电场和磁场的振幅被证明足够大,可以用现有的静电计和磁通计磁强计进行检测。在AAGW的作用下,近地大气层中产生的电场和磁场的振幅大小足以触发地球-大气层-电离层-磁层系统中子系统之间的耦合。结论:这些估计和不多的观察结果非常一致。关键词:声学和大气重力波、近地大气、体积电荷、大气压力扰动、电场、磁场
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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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