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Schumann Resonances as a Means of Investigating the Electromagnetic Environment in the Solar System

机译:舒曼共振作为研究太阳系电磁环境的一种手段

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The propagation of extremely low frequency (ELF, 3 Hz to 3 kHz) radio waves and resonant phenomena in the spherical Earth-ionosphere cavity has been studied for almost fifty years. When such a cavity is excited by naturally occurring broadband electromagnetic radiation, resonances can develop if the equatorial circumference is approximately equal to an integral number of wavelengths of the propagating electromagnetic waves; these are termed Schumann resonances. They provide information not only about thunderstorm and lightning activity on the Earth, and their relation to climate, but also on the properties of the low ionosphere. Similar investigations can be performed for any other planet or satellite, provided that it has an ionosphere. There are important differences between the Earth and other celestial bodies regarding, for example, the surface conductivity, the atmospheric conductivity profile, the geometry of the ionospheric cavity, and the sources of excitation. To a first approximation, the size of the cavity defines the fundamental resonant frequency, the atmospheric electron density profile controls the wave attenuation, the nature of the sources influences the electromagnetic field distribution in the cavity, and the body surface conductivity indicates to what extent the subsurface can be explored. The frequencies and attenuation rates of the principal eigenmodes depend upon the electrical properties of the cavity. Instruments that monitor the electromagnetic environment in the ELF range on the surface, on balloons, or on descent probes provide unique information on the cavity.
机译:球形地球-电离层空腔中极低频(ELF,3 Hz至3 kHz)无线电波的传播和共振现象已经研究了近五十年。当这样的空腔被自然产生的宽带电磁辐射激发时,如果赤道周长大约等于传播的电磁波波长的整数倍,则会产生共振。这些被称为舒曼共振。它们不仅提供有关地球上的雷暴和闪电活动及其与气候的关系的信息,而且还提供有关低电离层性质的信息。只要有电离层,就可以对任何其他行星或卫星进行类似的研究。在地球和其他天体之间,例如在表面电导率,大气电导率分布,电离层空腔的几何形状以及激发源方面存在重要差异。初步估算,空腔的大小定义了基本共振频率,大气电子密度分布控制了波的衰减,辐射源的性质影响空腔中的电磁场分布,而人体表面的电导率表明可以进行地下勘探。主要本征模的频率和衰减率取决于空腔的电特性。监测表面,气球或下降探针上ELF范围内电磁环境的仪器可提供有关腔体的独特信息。

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