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Terahertz resonances and bolometric response of a single-walled carbon nanotube

机译:单壁碳纳米管的太赫兹共振和辐射响应

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We describe an experiment to measure terahertz standing wave resonances on an individual single-walled carbon nanotube. These resonances are a probe of the strength of electron-electron interactions in this 1D system. The experiment is conducted in the interferometer originally developed in our lab for terahertz spectroscopy using an antenna-coupled superconducting bolometer as a detector. The superconducting bolometer allows us to characterize the frequency-dependent coupling using the same antenna geometry and experimental configuration as the nanotube. As a precursor to this work, we have also studied the response of an individual single-walled nanotube to dc and rf Joule heating. These measurements enable us to determine the thermal conductance of the nanotube, and also to clearly distinguish between the thermal and non-thermal high frequency response.
机译:我们描述了一种测量单壁碳纳米管上的太赫兹驻波共振的实验。这些共振是该1D系统中电子电子相互作用强度的探针。该实验是在我们的实验室中最初开发的干涉仪进行的,使用天线耦合的超导提高计作为探测器。超导辐射器允许我们使用与纳米管相同的天线几何形状和实验配置表征频率相关的耦合。作为这项工作的前体,我们还研究了单个壁纳米管对DC和RF焦耳加热的响应。这些测量使我们能够确定纳米管的热传导,也可以清楚地区分热和非热高频响应。

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