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Active control of all-fibre graphene devices with electrical gating

机译:通过电控门控制全纤维石墨烯器件

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摘要

Active manipulation of light in optical fibres has been extensively studied with great interest because of its compatibility with diverse fibre-optic systems. While graphene exhibits a strong electro-optic effect originating from its gapless Dirac-fermionic band structure, electric control of all-fibre graphene devices remains still highly challenging. Here we report electrically manipulable in-line graphene devices by integrating graphene-based field effect transistors on a side-polished fibre. Ion liquid used in the present work critically acts both as an efficient gating medium with wide electrochemical windows and transparent over-cladding facilitating light–matter interaction. Combined study of unique features in gate-variable electrical transport and optical transition at monolayer and randomly stacked multilayer graphene reveals that the device exhibits significant optical transmission change (>90%) with high efficiency-loss figure of merit. This subsequently modifies nonlinear saturable absorption characteristics of the device, enabling electrically tunable fibre laser at various operational regimes. The proposed device will open promising way for actively controlled optoelectronic and nonlinear photonic devices in all-fibre platform with greatly enhanced graphene–light interaction.
机译:由于它与各种光纤系统兼容,因此对光纤中的光的主动操纵进行了广泛的研究,引起了极大的兴趣。尽管石墨烯由于其无间隙的狄拉克-费米能带结构而具有很强的电光效应,但全纤维石墨烯器件的电控制仍然极富挑战性。在这里,我们通过将基于石墨烯的场效应晶体管集成在侧面抛光的光纤上来报告可电操作的在线石墨烯器件。当前工作中使用的离子液体在兼具高效的门控介质和宽的电化学窗口以及透明的覆层结构(促进光-质相互作用)方面起着至关重要的作用。结合研究单层和随机堆叠的多层石墨烯的栅极可变电传输和光学跃迁的独特功能,发现该器件显示出显着的光学透射率变化(> 90%),具有高效率损耗因数。随后,这会修改设备的非线性饱和吸收特性,从而使电可调谐光纤激光器在各种运行方式下均可使用。拟议中的设备将为全光纤平台中主动控制的光电和非线性光子设备开辟有希望的方式,极大地增强石墨烯-光的相互作用。

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