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Temporal and Frequency Evolution of Brillouin and Sommerfeld Precursors Through Dispersive Media in THz-IR Bands

机译:布里渊和Sommerfeld前体通过THz-IR波段中分散介质的时间和频率演化

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摘要

The evolution of rectangular and Gaussian pulses through dispersive media is analyzed using a frequency-domain technique, valid for any kind of modulated input signal propagated through any dispersive medium. Three different metals—aluminum, silver, and gold—are considered using the Drude dielectric model to characterize them, at operating frequencies of 1 and 100 THz. A Lorentz model was also tested in the picohertz frequency band. The frequency-domain approach facilitated to separate the different components of the signal after propagating through the dispersive medium: carrier, Brillouin and Sommerfeld fields. In combination with the electric-field intensity plots, the dynamical evolution related to Brillouin and Sommerfeld precursor has shown a different trend in the chosen media, undergoing also an opposite effect on the effective frequency deviation. The case of a finite thickness propagation medium is compared to half-space model showing differences in the precursor evolution behavior. Finally, with Drude model material parameters at an operating frequency of 100 THz, we demonstrated that the impinging wave is coupled through surface plasmon polaritons which are capable of coupling in the output facet of the finite thickness slab to radiating waves.
机译:使用频域技术分析矩形和高斯脉冲通过色散介质的演化,该技术对通过任何色散介质传播的任何类型的已调制输入信号均有效。考虑使用三种不同的金属(铝,银和金)使用Drude介电模型对其进行表征,工作频率为1和100 THz。还在皮赫兹频带中测试了Lorentz模型。频域方法有助于在通过色散介质传播后分离信号的不同分量:载波,布里渊和Sommerfeld场。结合电场强度图,与布里渊和Sommerfeld前体有关的动力学演化在所选介质中显示出不同的趋势,对有效频率偏差也产生了相反的影响。将有限厚度传播介质的情况与半空间模型进行比较,该模型显示了前驱体演化行为的差异。最后,使用工作频率为100 THz的Drude模型材料参数,我们证明了入射波通过表面等离激元极化子耦合,该等离激元极化子能够在有限厚度平板的输出面上耦合到辐射波。

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