首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >WhistlerWaves' Propagation in Plasmas With Systems of Small-Scale Density Irregularities: Numerical Simulations and Theory
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WhistlerWaves' Propagation in Plasmas With Systems of Small-Scale Density Irregularities: Numerical Simulations and Theory

机译:WhistlerWaves在等离子体的传播系统小规模的密度违规行为:数值模拟和理论

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The propagation of whistler waves in a magnetized plasma containing multiple small-scale (100m to 1 km) field-aligned irregularities of enhanced electron density is considered analytically and by means of numerical simulations. Such systems of irregularities can develop in the upper ionosphere during the generation of density ducts by high-frequency heating facilities and other types of active experiments. The simulation parameters are close to those of an active experiment where a whistler wave of 18 kHz emitted by a ground-based very low frequency (VLF) transmitter was received onboard the DEMETER satellite at 700km above the SURA heater. The study reveals a number of remarkable properties of the VLF waves' propagation, including the existence of specific waveguide modes of the small-scale density structures and of a characteristic transverse size d_0 of the irregularities. Irregularities with small density enhancements around 10-20% and transverse sizes larger than d_0 ~ 1km can serve as separate waveguides for VLF waves. In their turn, single irregularities narrower than d_0 cannot be considered as individual ducting structures. Numerical simulations show that, for the analysis of the electromagnetic whistlers' propagation, a system of closely spaced irregularities with scales narrower than d_0 can be modeled by an equivalent ducting structure with a smoothed density profile. Such equivalent structure has the same ducting properties for whistlers and can be produced by averaging with a sliding window of a scale about d_0 the original density distribution.
机译:惠斯勒波的传播在磁化等离子体包含多个小规模(100比1公里)field-aligned违规行为的增强电子密度是分析通过数值模拟的手段。违规行为的发展上期间电离层密度管道的一代高频加热设备和其他类型的活性实验。参数是积极的接近实验,惠斯勒一波18 kHz地面发出的频率很低(甚低频)受到机载发射机得墨忒耳卫星在苏拉加热器上方700公里。这项研究揭示了一些不同寻常的属性甚低频电波的传播,包括特定的波导的存在小规模的模式结构和密度的横向大小数的特征违规行为。增强和横向尺寸大约10 - 20%比d0 ~ 1公里可以作为单独的甚低频电波的波导。违规行为比d0不能窄视为个人管道结构。数值模拟表明,分析电磁啸叫声的传播,系统紧密间隔的违规行为比d0可以建模的范围窄相当于管道结构平滑密度剖面。相同的管道吹口哨的人的属性,可以是由平均的滑动窗口一个规模d0原来的密度分布。

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