飞秒
石墨烯
材料科学
光电子学
表面光电压
光学
工程物理
激光器
纳米技术
物理
光谱学
量子力学
作者
Klaas‐Jan Tielrooij,Łukasz Piątkowski,Mathieu Massicotte,Achim Woessner,Q. Ma,Y. Lee,Kevin Myhro,Chun Ning Lau,Pablo Jarillo‐Herrero,N.F. van Hulst,Frank H. L. Koppens
标识
DOI:10.1038/nnano.2015.54
摘要
Graphene is a promising material for ultrafast and broadband photodetection. Earlier studies have addressed the general operation of graphene-based photothermoelectric devices and the switching speed, which is limited by the charge carrier cooling time, on the order of picoseconds. However, the generation of the photovoltage could occur at a much faster timescale, as it is associated with the carrier heating time. Here, we measure the photovoltage generation time and find it to be faster than 50 fs. As a proof-of-principle application of this ultrafast photodetector, we use graphene to directly measure, electrically, the pulse duration of a sub-50 fs laser pulse. The observation that carrier heating is ultrafast suggests that energy from absorbed photons can be efficiently transferred to carrier heat. To study this, we examine the spectral response and find a constant spectral responsivity of between 500 and 1,500 nm. This is consistent with efficient electron heating. These results are promising for ultrafast femtosecond and broadband photodetector applications. Optical excitation of graphene can generate a photovoltage in less than 50 femtoseconds, and can result in efficient electron heating.
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