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Sensitivity Enhancement of Nonlinear Waveguide Sensors With Conducting Graphene Layer: TE Mode

Sensitivity Enhancement of Nonlinear Waveguide Sensors With Conducting Graphene Layer: TE Mode
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摘要 We propose a three-layer waveguide sensor. The proposed sensor consists of a graphene thin layer with constant conductivity at the interface between air and dielectric media with thickness d sitting above a nonlinear layer. The sensitivity of the sensor is derived from the dispersion equation. The sensitivity is calculated for both TE0 and TE1. Results show that the sensitivity of the proposed sensor depends on the conductivity of the graphene layer, the angular frequency, and the thickness of the dielectric layer. We propose a three-layer waveguide sensor. The proposed sensor consists of a graphene thin layer with constant conductivity at the interface between air and dielectric media with thickness d sitting above a nonlinear layer. The sensitivity of the sensor is derived from the dispersion equation. The sensitivity is calculated for both TE0 and TE1. Results show that the sensitivity of the proposed sensor depends on the conductivity of the graphene layer, the angular frequency, and the thickness of the dielectric layer.
出处 《Photonic Sensors》 SCIE EI CAS CSCD 2018年第1期29-33,共5页 光子传感器(英文版)
关键词 GRAPHENE nonlinear Kerr like materials optical sensor waveguide sensor Graphene nonlinear Kerr like materials optical sensor waveguide sensor
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