Plasmonic modulators based on enhanced interaction between graphene and localized transverse-electric plasmonic mode
Anle Hou,
Yulin Wang,
Feihu Geng
et al.
Abstract:Active plasmonic modulators with high modulation depth, low energy consumption, ultra-fast speed, and small footprint are of interest and particular significance for nanophotonics and integrated optics. Here by constructing a transverse-electric (TE) plasmonic mode and maximizing the in-plane component localized on the graphene surface, we propose a high-performing plasmonic modulator based on a graphene/split ring-like plasmonic waveguide (SRPW) system with a record high modulation depth (20.46 dB/µm) and sup… Show more
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