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Microwave Detection and Mixing in Metallic Single Wall Carbon Nanotubes and Potential for a New Terahertz Detector

机译:微波检测和在金属单壁碳纳米管中混合和新的Terahertz探测器的潜力

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This paper reports measurements of microwave (up to 4.5 GHz) detection in metallic single-walled carbon nanotubes. The measured voltage responsivity was found to be 114 V/W at 77K and 9,000 VAV at 4.2K. We also demonstrated heterodyne detection at 1 GHz. Above 1.3 GHz the detector response falls off by 12 dB/ octave. The detection mechanism can be explained based on standard microwave detector theory and the nonlinearity of the DC IV-curve, the so-called "zero-bias anomaly". We discuss the possible causes of this nonlinearity. While the frequency response is limited by circuit parasitics in this measurement, we discuss evidence that indicates that the intrinsic effect is much faster and that applications of carbon nanotubes as terahertz detectors are feasible.
机译:本文报告了金属单壁碳纳米管中微波(高达4.5GHz)检测的测量。发现测量的电压响应率为114 V / W,为77k,9,000 VAV为4.2K。我们还展示了1 GHz的外差检测。高于1.3 GHz,探测器响应由12 dB / Octave脱落。检测机构可以基于标准微波检测器理论和DC IV曲线的非线性来解释,所谓的“零偏压异常”。我们讨论了这种非线性的可能原因。虽然频率响应受到这种测量的电路寄生的限制,但我们讨论证据表明本质效果要快得多,并且碳纳米管作为太赫兹探测器的应用是可行的。

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