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FDTD Simulation on Terahertz Waves Propagation Through a Dusty Plasma

机译:太赫兹波通过尘土等离子体传播的FDTD模拟

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The frequency dependent permittivity for dusty plasmas is provided by introducing the charging response factor and charge relaxation rate of airborne particles. The field equations that describe the characteristics of Terahertz (THz) waves propagation in a dusty plasma sheath are derived and discretized on the basis of the auxiliary differential equation (ADE) in the finite difference time domain (FDTD) method. Compared with numerical solutions in reference, the accuracy for the ADE FDTD method is validated. The reflection property of the metal Aluminum interlayer of the sheath at THz frequencies is discussed. The effects of the thickness, effective collision frequency, airborne particle density, and charge relaxation rate of airborne particles on the electromagnetic properties of Terahertz waves through a dusty plasma slab are investigated. Finally, some potential applications for Terahertz waves in information and communication are analyzed.
机译:通过引入空气中颗粒的充电响应因子和电荷弛豫率,可以提供尘埃等离子体的频率相关介电常数。在有限差分时域(FDTD)方法的辅助微分方程(ADE)的基础上,得出并离散化了描述太赫兹(THz)波在尘土等离子体鞘中传播的特性的场方程。与参考中的数值解决方案相比,验证了ADE FDTD方法的准确性。讨论了护套金属铝夹层在太赫兹频率下的反射特性。研究了厚度,有效碰撞频率,气载颗粒密度和气载颗粒的电荷弛豫率对通过尘土等离子体平板的太赫兹波电磁性能的影响。最后,分析了太赫兹波在信息和通信中的一些潜在应用。

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