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首页> 外文期刊>Plasma Science, IEEE Transactions on >Effects of Reentry Plasma Sheath on the Polarization Properties of Obliquely Incident EM Waves
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Effects of Reentry Plasma Sheath on the Polarization Properties of Obliquely Incident EM Waves

机译:再入等离子体鞘对斜入射电磁波偏振特性的影响

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摘要

A novel and simple analytical technique referred to as transmission line analogy is developed and modified to study the transmission properties of the perpendicular polarized wave and the parallel polarized wave obliquely incident on the reentry plasma sheath. Based on the transmission coefficients, the effects of the plasma sheath on the polarization property of obliquely incident electromagnetic (EM) waves are studied. Taking the GPS navigation right hand circularly polarized wave as an example, the influences of incident angle and plasma parameters, including the electron density and the collision frequency on the EM wave’s polarization property are studied. Numerical results indicate that the larger the incident angle and the lower the collision frequency is, the worse the deterioration of the polarization property. In addition, the polarization property deteriorates most seriously when the cutoff frequency of the peak electron density is closest to the frequency of the EM waves.
机译:开发并修改了一种新颖且简单的分析技术,称为传输线类比,以研究倾斜入射在折返等离子体鞘层上的垂直极化波和平行极化波的传输特性。基于传输系数,研究了等离子体鞘层对倾斜入射电磁波的极化特性的影响。以GPS导航右旋圆极化波为例,研究了入射角和等离子体参数,包括电子密度和碰撞频率对电磁波极化特性的影响。数值结果表明,入射角越大,碰撞频率越低,偏振特性的恶化越严重。另外,当峰值电子密度的截止频率最接近EM波的频率时,偏振特性最严重地恶化。

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