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Optical absorption and energy-loss spectra of aligned carbon nanotubes

机译:取向碳纳米管的光吸收和能量损失谱

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Optical-absorption cross-sections and energy-loss spectra of aligned multishell carbon nanotubes are investigated, on the basis of photonic band-structure calculations. A local graphite-like dielectric tensor is assigned to every point of the tubules, and the effective transverse dielectric function of the composite is computed by solving Maxwell's equations in media with tensor-like dielectric functions. A Maxwell-Garnett-like approach appropriate to the case of infinitely long anisotropic tubules is also developed. Our full calculations indicate that the experimentally measured macroscopic dielectric function of carbon nanotube materials is the result of a strong electromagnetic coupling between the tubes. An analysis of the electric-field pattern associated with this coupling is presented, showing that in the close-packed regime the incident radiation excites a very localized tangential surface plasmon.
机译:在光子能带结构计算的基础上,研究了取向多壳碳纳米管的光吸收截面和能量损失谱。将局部石墨状介电张量分配给小管的每个点,并通过在具有张量介电函数的介质中求解麦克斯韦方程,计算出复合材料的有效横向介电函数。还开发了适用于无限长的各向异性小管的Maxwell-Garnett类方法。我们的全部计算表明,碳纳米管材料的实验测量宏观介电功能是管之间强电磁耦合的结果。给出了与这种耦合相关的电场模式的分析,表明在密排状态下,入射辐射激发了非常局部的切向表面等离子体激元。

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