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Photo-induced reduction of graphene oxide coating on optical waveguide and consequent optical intermodulation

机译:光诱导光波导上氧化石墨烯涂层的还原以及随之发生的光互调

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摘要

Increased absorption of transverse-magnetic (TM) - polarised light by a graphene-oxide (GO) coated polymer waveguide has been observed in the presence of transverse-electric (TE) - polarised light. The GO-coated waveguide exhibits very strong photo-absorption of TE-polarised light - and acts as a TM-pass waveguide polariser. The absorbed TE-polarised light causes a significant temperature increase in the GO film and induces thermal reduction of the GO, resulting in an increase in optical-frequency conductivity and consequently increased optical propagation loss. This behaviour in a GO-coated waveguide gives the action of an inverted optical switch/modulator. By varying the incident TE-polarised light power, a maximum modulation efficiency of 72% was measured, with application of an incident optical power level of 57 mW. The GO-coated waveguide was able to respond clearly to modulated TE-polarised light with a pulse duration of as little as 100 μs. In addition, no wavelength dependence was observed in the response of either the modulation (TE-polarised light) or the signal (TM-polarised light).
机译:在存在横向电(TE)偏振光的情况下,已观察到石墨烯氧化物(GO)涂层的聚合物波导对横向磁(TM)偏振光的吸收增加。镀GO的波导对TE偏振光表现出非常强的光吸收-并充当TM通波导偏振器。吸收的TE偏振光会导致GO膜的温度显着升高,并引起GO的热还原,从而导致光频率传导率增加,从而导致光传输损耗增加。 GO涂层波导中的这种行为给出了反向光开关/调制器的作用。通过改变入射TE偏振光的功率,在入射光功率为57 incidentmW的情况下,最大调制效率为72%。镀GO的波导能够以短至100μs的脉冲持续时间对调制的TE偏振光做出清晰的响应。另外,在调制(TE偏振光)或信号(TM偏振光)的响应中均未观察到波长依赖性。

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