准光学太赫兹光束中的多壁碳纳米管气凝胶

I. Dorofeev, V. Suslyaev, S. Moseenkov, V. Kuznetsov, K. Dorozhkin
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摘要

本文对多壁碳纳米管(MWCNTs)形成的平面平行气凝胶层在太赫兹范围内的反射率进行了建模。多壁碳纳米管(MWCNTs)是通过原始的一步法在650-700°C下以C2H4/Ar为原料,使用预成型的Fe-Co /CaO催化剂合成的。当频率从100ghz增加到1.5 THz时,反射率降低了两倍以上。基于实验数据和众所周知的由相交导体的三维晶格构成的线介质模型,使用MWCNTs构建了具有等效于不规则气凝胶介质的有效电物理特性的规则线介质模型。该模型表明,在太赫兹频率范围内,由于等效介质的等离子体频率位于这里,反射率显著下降。该模型可以估计气凝胶环境在5太赫兹频率范围内的特性,并随气凝胶中MWCNTs堆积密度的变化而变化。给出了在这种介质的薄(亚毫米)层上正常电磁干扰入射情况下的反射、透射和吸收的估计。
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Multi-walled carbon nanotube aerogels in quasi-optical terahertz beams
The paper presents the modeling of the reflectance in the terahertz range from the plane-parallel aerogel layers formed by multi-walled carbon nanotubes (MWCNTs), which were synthesized via the original one-step technique using a preformed Fe–Co/CaO catalyst at 650–700°C in C2H4/Ar feedstock. With an increase in frequency from 100 GHz to 1.5 THz, the reflectance decreases by more than a factor of two. Based on the experimental data and the well-known wire medium model formed by a three-dimensional lattice of intersecting conductors, a model of a regular wire medium is constructed using MWCNTs with effective electrophysical characteristics equivalent to those of an irregular aerogel medium. This model reveals that a significant drop in the reflectance in the terahertz frequency range occurs because the plasma frequency of the equivalent medium is located here. The model allows estimating the properties of the aerogel environment in the frequency range extending up to 5 THz and with variations in the packing density of MWCNTs in aerogel. Estimates of the reflection, transmission, and absorption are presented for the case of normal EMI incidence on thin (submillimeter) layers of such a medium.
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