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Terahertz sensing with carbon nanotube layers coated on silica fibers: Carrier transport versus nanoantenna effects

机译:太赫兹感测,其碳纳米管层涂覆在二氧化硅纤维上:载流子传输与纳米天线效应

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摘要

Carbon nanotube layers prepared as coatings on silica fibers are found to be suitable for terahertz detection in 0.5–7.3 THz range within temperatures of 4.2–70 K. In time-domain of terahertz excitation, two following constituents in the photoresponse are discriminated: the first one is attributed to the bolometric effect while the other one is related to the photoconductivity caused by the terahertz-induced hopping effect. In frequency domain, nonmonotonic behavior of the photoconductivity is associated with prevailing carbon nanotube-induced antenna effects in the electronic transport. The experimental observations are supported by theoretical estimates.
机译:发现在二氧化硅纤维上用作涂层的碳纳米管层适合在4.2-70 K的温度范围内以0.5-7.3 THz范围内的太赫兹检测。在太赫兹激发的时域中,光响应中的以下两个成分被区分:第一个一种归因于辐射热效应,而另一种归因于太赫兹诱发的跳跃效应引起的光电导性。在频域中,光电导的非单调性行为与电子传输中主要的碳纳米管诱导的天线效应有关。实验观察得到理论估计的支持。

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