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Detection of cyclotron resonance using photo-induced thermionic emission at graphene/MoS_2 van der Waals interface

机译:在石墨烯/ MoS_2 van der Waals界面上使用光致热电子发射检测回旋共振

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摘要

We demonstrate the detection of cyclotron resonance in graphene by a photo-induced thermionic emission mechanism at the graphene/MoS2 van der Waals (vdW) Schottky junction. At cyclotron resonance in Landau-quantized graphene, the infrared light is absorbed, and an electron-hole pair is generated. When the energy of a photoexcited electron exceeds the band offset energy at the graphene/MoS2 interface, the electron transfer occurs from graphene to the conduction band of MoS2, and the hole remains in graphene. This creates an electron-hole separation at the graphene/MoS2 interface at cyclotron resonance, and a photovoltage is generated. The proposed method is an infrared photodetection technique through out-of-plane transport at the vdW junction, which is distinct from the previously reported methods that use in-plane transport in graphene for electronic detection of the cyclotron resonance. Despite the simple structure of our device with a single-vdW junction, our method exhibits a very high sensitivity of similar to 10(6) V/W, which shows an improvement of three orders of magnitude over the previously reported values. Therefore, the proposed method displays a high potential for cyclotron resonance-based infrared photodetector applications.
机译:我们通过在石墨烯/ MoS2范德华(vdW)肖特基结处的光诱导热电子发射机制证明了在石墨烯中回旋共振的检测。在Landau量化的石墨烯中进行回旋共振时,红外光被吸收,并生成电子-空穴对。当光激发电子的能量超过石墨烯/ MoS2界面处的带隙能量时,电子会从石墨烯转移到MoS2的导带,并且空穴保留在石墨烯中。这在回旋加速器共振时在石墨烯/ MoS2界面处产生电子-空穴分离,并产生光电压。所提出的方法是一种通过在vdW结处进行面外传输的红外光电检测技术,该技术不同于先前报道的在石墨烯中使用面内传输进行回旋加速器共振电子检测的方法。尽管我们的设备具有单vdW结的结构简单,但我们的方法仍具有非常高的灵敏度,类似于10(6)V / W,与以前报道的值相比,其灵敏度提高了三个数量级。因此,提出的方法在基于回旋共振的红外光电探测器应用中显示出很高的潜力。

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