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Adiabatic control of surface plasmon-polaritons in a 3-layers graphene curved configuration
Journal article   Peer reviewed

Adiabatic control of surface plasmon-polaritons in a 3-layers graphene curved configuration

Wei Huang, Shi-Jun Liang, Elica Kyoseva and Lay Kee Ang
Carbon (New York), Vol.127, pp.187-192
01/02/2018

Abstract

Chemistry Chemistry, Physical Materials Science Materials Science, Multidisciplinary Physical Sciences Science & Technology Technology
In this paper, we utilize coupled mode theory (CMT) to model the coupling between surface plasmonpolaritons (SPPs) between multiple graphene sheets. By using the Stimulated Raman Adiabatic Passage (STIRAP) Quantum Control Technique, we propose a novel directional coupler based on SPPs evolution in three layers of graphene sheets in some curved configuration. Our calculated results show that the SPPs can be transferred efficiently from the input graphene sheet to the output graphene sheet, and the coupling is also robust that it is not sensitive to the length of the device configuration's parameters and excited SPPs wavelength. (C) 2017 Elsevier Ltd. All rights reserved.

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