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Manifestation of plasmonic response in the detection of sub-terahertz radiation by graphene-based devices

机译:基于石墨烯的器件检测亚赫兹辐射的等离子体响应的表现

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We report on the sub-terahertz (THz) (129-450 GHz) photoresponse of devices based on single layer graphene and graphene nanoribbons with asymmetric source and drain (vanadium and gold) contacts. Vanadium forms a barrier at the graphene interface, while gold forms an Ohmic contact. We find that at low temperatures (77 K) the detector responsivity rises with the increasing frequency of the incident sub-THz radiation. We interpret this result as a manifestation of a plasmonic effect in the devices with the relatively long plasmonic wavelengths. Graphene nanoribbon devices display a similar pattern, albeit with a lower responsivity.
机译:我们报告基于单层石墨烯和石墨烯纳米与不对称源和沥水(钒和金)触点的器件的亚太赫兹(THz)(129-450GHz)光响应。 钒在石墨烯界面形成屏障,而金子形成欧姆接触。 我们发现,在低温下(77 k),探测器响应性随着事件次THz辐射的频率的增加而上升。 我们将该结果解释为具有相对长的等离子体波长的器件中的等离子体效应的表现形式。 石墨烯纳米孔装置显示类似的图案,尽管响应性较低。

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