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Antenna resonances in carbon nanotubes: Theoretical model and experimental verification

机译:碳纳米管中的天线共振:理论模型和实验验证

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Electromagnetic scattering theory and effective medium approach are applied to calculate effective permittivity of composite media comprising of single-walled carbon nanotubes (SWCNTs) in broad frequency range from radiofrequency to ultraviolet. We demonstrate theoretically the dominant role of finite length effect in the far-infrared conductivity spectra of SWCNT material due to the strong slowing down of surface polariton. The experimental evidence of the finite-length effect in the FIR spectra of SWCNT films is presented. Experimental results demonstrate the phenomena of localized plasmon resonance in SWCNTs and prove theoretically predicted antenna effect in SWCNTs in terahertz and far-infrared ranges.
机译:应用电磁散射理论和有效介质方法,计算了从射频到紫外线的宽频率范围内的单壁碳纳米管(SWCNT)组成的复合介质的有效介电常数。我们从理论上证明了有限长度效应在SWCNT材料的远红外电导率光谱中的显着作用,这归因于表面极化子的强烈减慢。给出了SWCNT薄膜的FIR光谱中有限长度效应的实验证据。实验结果证明了SWCNT中的局部等离振子共振现象,并在理论上证明了太赫兹和远红外范围内SWCNT中的天线效应。

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