Thermo-Optical Modulator Based on VO2 and Graphene Plasmonics

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초록

This paper details the design and theoretical analysis of a novel thermo-optical modulator that leverages the unique phase transition characteristics of vanadium dioxide (VO2) and the plasmonic properties of graphene. Employing a combination of transmission and reflection mode structures, the study explores four configurations designed to optimize modulation depth and minimize insertion loss. The analysis conducted using COMSOL Multiphysics with the finite element method (FEM) highlights the significant influence of geometrical parameters on the modulator's performance. The specific attention to the interaction between VO2's phase transition at critical temperatures and graphene's conductivity adjustment provides insights into the dynamic control of optical signals in the mid-infrared spectrum.

키워드

GrapheneModulationPhase modulationOptical reflectionConductivityOptical modulationOscillatorsPhotonicsOptical variables controlOptical refractionGraphene optical conductivitymodulation depthsurface plasmon resonance (SPR)thermo-optical effectvanadium dioxide (VO2)TRANSITIONDESIGNFILMS
제목
Thermo-Optical Modulator Based on VO2 and Graphene Plasmonics
저자
Vatani, SarehVAHID, FARAMARZIPark, Jeongwon
DOI
10.1109/JPHOT.2025.3581488
발행일
2025-08
유형
Article
저널명
IEEE Photonics Journal
17
4

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