离子对极地中间层夏季回波区电导率和介电常数的影响

IF 2.9 3区 地球科学
Safi Ullah, HaiLong Li, Abdur Rauf, Lin Meng, Bin Wang, ShuCan Ge, MaoYan Wang
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引用次数: 0

摘要

首次分析了离子对极层夏季回波(PMSE)高度尘埃等离子体复合电导率和介电常数的影响。由于离子质量大、热速度小,在尘埃等离子体电磁特性的研究中一般不考虑离子的影响。在本研究中,我们通过加入离子效应来修正电导率和介电常数方程。在80至90公里之间的PMSE高度区域,电子密度的局部降低(即电子咬出)是由电子被灰尘颗粒吸收而产生的。咬出条件下粉尘密度高,电子密度小。从较强咬出条件下的模拟结果来看,离子对电导率的影响随着粉尘粒径的减小、电子温度的降低和中性密度的降低而变得显著。在较弱的咬出条件下,离子对电导率的影响随着粉尘粒径的增大、电子温度的升高和中性密度的增大而增大。另一方面,对于不同的粉尘尺寸,电子温度和中性密度,离子对复介电常数的影响只有在非常强的咬出条件下才显着。基于这些模拟结果,我们得出结论,在没有电子咬出条件的情况下,离子对复合电导率和介电常数的影响不显著,可以忽略。然而,在咬出条件下,离子的影响变得明显,不可忽视,因为它会显著改变尘埃等离子体的电导率和介电常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of ions on conductivity and permittivity in the Polar Mesosphere Summer Echoes region

Effect of ions on conductivity and permittivity in the Polar Mesosphere Summer Echoes region

For the first time, the effect of ions on complex conductivity and permittivity of dusty plasma at Polar Mesosphere Summer Echoes (PMSE) altitude is analyzed. Because of ions higher mass and smaller thermal velocity, generally, their effects are not considered in the study of electromagnetic properties of dusty plasmas. In this study, we modified the equations of conductivity and permittivity by adding the effect of ions. In the PMSE altitude region between 80 and 90 km, a local reduction in electron density (i.e., an electron bite-out), is produced by electron absorption onto dust particles. The bite-out condition contains high dust density and smaller electron density. From simulation results in comparatively strong bite-out conditions, we found that the ion effects on conductivity become significant with smaller dust size, lower electron temperature, and lower neutral density. For comparatively weak bite-out conditions, the ion effects on conductivity become significant with larger dust size, higher electron temperature, and higher neutral density. On the other hand, for different dust sizes, electron temperatures and neutral density, the ion effects on complex permittivity become significant only in very strong bite-out conditions. Based on these simulation results, we conclude that, in the absence of electron bite-out conditions, the effect of ions on complex conductivity and permittivity is not significant and can be ignored. However, during bite-out conditions, the effect of ions becomes significant and cannot be ignored because it significantly changes the conductivity and permittivity of dusty plasmas.

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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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