Zhou Feng, Du Wei
Appl Opt. 2018 Aug 10;57(23):6645-6650. doi: 10.1364/AO.57.006645.
By utilizing the ultrafast dynamics of the photo-excited electrons in graphene, we theoretically present an ultrafast all-optical plasmonic modulator. With the help of an external pump, the femtosecond thermodynamics of the hot carriers can tune the Fermi level of the graphene sheet in less than 1 ps, which is the dependence of the support for the surface plasmonic wave. This device shows the ability to operate from the near-infrared regime to the far-infrared spectrum with the extinction ratio over 10 dB and the pump fluence of 0.41 mJ/cm. Such an ultrafast modulator may pave the way for designing the ultrahigh speed integrated photonics circuits.
通过利用石墨烯中光激发电子的超快动力学,我们从理论上提出了一种超快全光等离子体调制器。在外部泵浦的帮助下,热载流子的飞秒热力学能够在不到1皮秒的时间内调节石墨烯片的费米能级,这是对表面等离子体波支持的依赖关系。该器件显示出能够在近红外波段到远红外光谱范围内工作,消光比超过10分贝,泵浦通量为0.41 毫焦/平方厘米。这种超快调制器可能为设计超高速集成光子电路铺平道路。