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FDTD Analysis of Terahertz Wave Propagation in a High-Temperature Unmagnetized Plasma Slab

机译:高温非磁化等离子体平板中太赫兹波传播的FDTD分析

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Terahertz (THz) waves have been attracting much attention for a variety of technologies in recent years. However, only limited several experimental investigations on the terahertz characterization of plasmas have been reported. In this paper, a finite-difference time-domain method is applied to model the terahertz wave propagation in a high-temperature unmagnetized plasma. The rational polynomial function is established based on a hot plasma dispersion relation, and then, the relationship between $D$ and $E$ is deduced in the time domain. In the frequency domain, the reflection and transmission coefficients of terahertz waves through the hot unmagnetized plasma slab are computed, and their dependences on plasma frequency, plasma thickness, and collision frequency are studied. The results show theoretically that, when the terahertz wave passes through the plasma layer, its amplitude is obviously modulated by the electron density profile, the collision frequency, and the electron temperature. Finally, the potential application of terahertz waves in plasma diagnostics has been discussed.
机译:近年来,太赫兹(THz)波已受到多种技术的关注。然而,仅有限的几个实验研究对等离子体的太赫兹表征。本文采用时域有限差分法对太赫兹波在高温非磁化等离子体中的传播进行建模。基于热等离子体弥散关系建立有理多项式函数,然后, $ D $ $ E $ 。在频域中,计算了太赫兹波通过热的未磁化等离子体平板的反射和透射系数,并研究了它们对等离子体频率,等离子体厚度和碰撞频率的依赖性。结果从理论上表明,太赫兹波穿过等离子体层时,其振幅明显受到电子密度分布,碰撞频率和电子温度的调节。最后,讨论了太赫兹波在等离子体诊断中的潜在应用。

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