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A Theoretical Study of Nonlinear Multi-Channel Graphene Components for the Near and Far-Infrared

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Abstract

Two graphene-based nonlinear multi-channel components are presented. They include a graphene-enhanced silicon disk resonator for all-optical saturable-absorption-induced routing in the NIR together with a high conversion-efficiency graphene standing-wave micro-ribbon resonator for FWM in the FIR.

© 2020 The Author(s)

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