State Key Laboratory of Modern Optical Instrumentation, Department of Optical Engineering, Zhejiang University , Hangzhou 310027, China.
Nano Lett. 2014 Feb 12;14(2):955-9. doi: 10.1021/nl404356t. Epub 2014 Jan 13.
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduction and valence bands and the strong interband transitions. It allows broadband light-matter interactions with ultrafast responses and can be readily pasted to surfaces of functional structures for photonic and optoelectronic applications. Recently, graphene-based optical modulators have been demonstrated with electrical tuning of the Fermi level of graphene. Their operation bandwidth, however, was limited to about 1 GHz by the response of the driving electrical circuit. Clearly, this can be improved by an all-optical approach. Here, we show that a graphene-clad microfiber all-optical modulator can achieve a modulation depth of 38% and a response time of ∼ 2.2 ps, limited only by the intrinsic carrier relaxation time of graphene. This modulator is compatible with current high-speed fiber-optic communication networks and may open the door to meet future demand of ultrafast optical signal processing.
石墨烯是一种具有独特特性的光学材料,因为它具有线性色散的导带和价带以及强烈的带间跃迁。它允许宽带光物质相互作用,具有超快的响应,并且可以很容易地粘贴到功能结构的表面,用于光子和光电应用。最近,已经证明了基于石墨烯的光调制器可以通过调节石墨烯的费米能级来实现电调谐。然而,由于驱动电路的响应,它们的工作带宽被限制在约 1GHz 以内。显然,这可以通过全光方法来改善。在这里,我们展示了一种石墨烯覆盖的微光纤全光调制器,其调制深度可达 38%,响应时间约为 2.2ps,仅受石墨烯本征载流子弛豫时间的限制。这种调制器与当前的高速光纤通信网络兼容,可能为满足未来超快光信号处理的需求开辟道路。