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Tunable Goos-Hänchen Shift in Symmetric Graphene-Integrated Bragg Gratings
Quankun Zhang1,2, Miaomiao Zhao1,2, Hao Ni1,2
1School of Electronic and Information Engineering, Hubei University of Science and Technology, Xianning 437100, China.
Abstract:
We theoretically analyze the spatial Goos-Hänchen (GH) shifts in symmetric Graphene-Integrated Bragg Gratings (GIBGs), where monolayer graphene arrays act as tunable input/output couplers, and a periodically inserted dielectric layer forms a resonant cavity. By optimizing the cavity design, we achieve a GH shift of 1766λ, surpassing the conventional limit of hundreds of wavelengths under single-parameter tuning. The direction and magnitude can be actively controlled by the graphene's chemical potential, grating geometry, or dielectric thickness. This mechanism may enable high-sensitivity refractive index sensors or adaptive optical devices.
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