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Photo-induced reduction of graphene oxide coating on optical waveguide and consequent optical intermodulation
Author(s) -
Wu Yi Chong,
W. H. Lim,
Yoke Khin Yap,
Choon Kong Lai,
R.M. De La Rue,
H. Ahmad
Publication year - 2016
Publication title -
scientific reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.24
H-Index - 213
ISSN - 2045-2322
DOI - 10.1038/srep23813
Subject(s) - materials science , waveguide , polarizer , optoelectronics , graphene , optical power , optics , absorption (acoustics) , ray , optical modulator , modulation (music) , phase modulation , birefringence , laser , nanotechnology , physics , phase noise , acoustics , composite material
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).

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