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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Relationship of electric field and charged particle density fluctuations to air turbulence in the mesosphere
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Relationship of electric field and charged particle density fluctuations to air turbulence in the mesosphere

机译:电场和带电粒子密度起伏与中层大气湍流的关系

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摘要

A theoretical model is developed that is applicable to the electric field fluctuations that arise in the polar summer mesosphere as a result of the coupling of the charged species to the neutral air turbulence. The motions of electrons, ions, and charged aerosol particles are described as harmonic oscillators both driven and damped by the drag force exerted by the neutral air. The relative fluctuations in the ion density are found to be nearly the same as those in the neutral air as a consequence of the ions' high-momentum transfer relaxation frequency. The aerosol density fluctuations follow those of the neutral air at frequencies below their relaxation frequency, which is in the acoustic range. The electrons move primarily in response to the electric force to partially cancel the net charge density of ions and aerosol particles except at wavelengths shorter than the Debye length. Electric field and charge density fluctuations are calculated for several sets of conditions. In “bite-out” regions in which the electron density is reduced as a consequence of attachment to the aerosol particles the electric field fluctuations are found to be enhanced, which is consistent with observations.
机译:建立了一种理论模型,该模型适用于由于带电物质与中性空气湍流耦合而在极地夏季中球层中产生的电场波动。电子,离子和带电气溶胶粒子的运动被描述为谐波振荡器,它受中性空气施加的阻力驱动和衰减。由于离子具有高动量传递弛豫频率,因此发现离子密度的相对波动与中性空气中的波动几乎相同。气溶胶密度的波动遵循中性空气的波动,其频率低于其松弛频率,该频率处于声学范围内。电子主要响应于电力而移动,以部分抵消离子和气溶胶颗粒的净电荷密度,但波长小于德拜长度的除外。计算了几种条件下的电场和电荷密度波动。在“咬合”区域中,由于附着到气溶胶颗粒上而导致电子密度降低,发现电场波动得到增强,这与观察结果一致。

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