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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Studies of ELF propagation in the spherical shell cavity using a field decomposition method based on asymmetry of Schumann resonance curves
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Studies of ELF propagation in the spherical shell cavity using a field decomposition method based on asymmetry of Schumann resonance curves

机译:基于舒曼共振曲线不对称性的场分解法研究ELF在球壳腔内的传播

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Asymmetric resonance curves are observed in various resonance systems occurring in nature. The reason for such a shape of the resonance curves is an interaction of the standing waves field in the resonator with the field of traveling waves which transmit energy from sources to the resonator. This behavior can be observed in strongly damped electromagnetic resonators. The ELF wave propagation inside the Earth-ionosphere cavity is a good example of the simultaneous occurrence of resonance and transmission phenomena. In this paper we show that the transmission field component depends on the attenuation rate of the Earth-ionosphere cavity and the observer-source distance. Besides, the resonance curve asymmetry causes an evident diurnal variability of the resonance frequencies. The superposition of the two components at any point of the resonator makes the analysis of the Schumann resonance (SR) difficult. Here we suggest a field decomposition method that allows separating the resonance component from the transmission one. Owing to the decomposition, having a single measurement of the E or B field, it is possible, independently of the observer position, to study the physical properties of the resonator as well as to determine the localization and the intensity of sources. The field decomposition permits defining new resonator parameters such as reduced resonance frequencies and reduced quality factors, independent of the observer position inside the cavity. We believe that the application of the decomposition method in the analysis of the ELF observations yields a possibility of improving the accuracy of the determination of both the distances and intensities of the sources exciting the Earth-ionosphere resonator, as well as its own parameters.
机译:在自然界发生的各种共振系统中观察到不对称共振曲线。谐振曲线的形状如此的原因是谐振器中的驻波场与将能量从源传输到谐振器的行波场的相互作用。在强阻尼电磁谐振器中可以观察到此行为。 ELF波在地球电离层腔内的传播是同时发生共振和传输现象的一个很好的例子。在本文中,我们表明传输场分量取决于地球电离层空腔的衰减率和观测者与源的距离。此外,共振曲线的不对称性导致共振频率的明显的昼夜变化。两个分量在谐振器的任意点处的叠加使得对舒曼共振(SR)的分析变得困难。在这里,我们提出一种场分解方法,该方法允许将共振分量与传输分量分开。由于具有E或B场的单个测量值的分解,有可能独立于观察者位置来研究谐振器的物理特性以及确定源的定位和强度。场分解允许定义新的共振器参数,例如降低的共振频率和降低的品质因数,而与腔体内观察者的位置无关。我们认为,分解方法在ELF观测分析中的应用产生了提高确定激发电离层谐振器的源的距离和强度以及其自身参数的准确性的可能性。

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