Title : Highly efficient graphene-on-gap modulator by employing the hybrid plasmonic effect.

Pub. Date : 2017 May 1

PMID : 28454148






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1 We propose a highly efficient graphene-on-gap modulator (GOGM) by employing the hybrid plasmonic effect, whose modulation efficiency (up to 1.23 dB/mum after optimization) is ~12-fold larger than that of the present graphene-on-silicon modulator (~0.1 dB/mum). Graphite latexin Homo sapiens
2 We propose a highly efficient graphene-on-gap modulator (GOGM) by employing the hybrid plasmonic effect, whose modulation efficiency (up to 1.23 dB/mum after optimization) is ~12-fold larger than that of the present graphene-on-silicon modulator (~0.1 dB/mum). Graphite latexin Homo sapiens
3 We propose a highly efficient graphene-on-gap modulator (GOGM) by employing the hybrid plasmonic effect, whose modulation efficiency (up to 1.23 dB/mum after optimization) is ~12-fold larger than that of the present graphene-on-silicon modulator (~0.1 dB/mum). Graphite latexin Homo sapiens