论文标题

通过光栅栅极石墨烯结构对Terahertz辐射的室温扩增

Room Temperature Amplification of Terahertz Radiation by Grating-Gate Graphene Structures

论文作者

Boubanga-Tombet, Stephane, Knap, Wojciech, Yadav, Deepika, Satou, Akira, But, Dmytro B., Popov, Vyacheslav V., Gorbenko, Ilya V., Kachorovskii, Valentin, Otsuji, Taiichi

论文摘要

我们报告了通过光栅线石墨烯 - 通道晶体管纳米结构的Terahertz(THZ)辐射传播的实验研究,并证明了由电流驱动的等离子体兴奋刺激的室温THZ辐射放大。具体而言,随着在周期性电荷密度调制下的直流电流(DC)的增加,我们观察到谐振THZ等离子体吸收的强烈红移,其完全漂白,然后是谐振等离子频率的扩增和蓝色移位。据我们所知,我们的结果是对能量转移从直流电流到等离子的第一个实验性观察,导致THZ扩增。我们提出了一个简单的模型,允许观察到的放大现象的现象学描述。该模型表明,在存在直流电流的情况下,辐射诱导的耗散校正对载体密度和漂移速度的Thz振荡之间的相移很敏感,并且随着电流的增加而变为负,导致扩增。这项工作的实验结果是在室温下获得的所有功能,铺平了朝基于2D的新的基于2D等离子体的道路。

We report on experimental studies of terahertz (THz) radiation transmission through grating-gate graphene-channel transistor nanostructures and demonstrate room temperature THz radiation amplification stimulated by current-driven plasmon excitations. Specifically, with increase of the direct current (dc) under periodic charge density modulation, we observe a strong red shift of the resonant THz plasmon absorption, its complete bleaching, followed by the amplification and blue shift of the resonant plasmon frequency. Our results are, to the best of our knowledge, the first experimental observation of energy transfer from dc current to plasmons leading to THz amplification. We present a simple model allowing for the phenomenological description of the observed amplification phenomena. This model shows that in the presence of dc current the radiation-induced correction to dissipation is sensitive to the phase shift between THz oscillations of carrier density and drift velocity, and with increase of the current becomes negative, leading to amplification. The experimental results of this work as all obtained at room temperature, pave the way towards the new 2D plasmons based, voltage tuneable THz radiation amplifiers.

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