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Enhanced Goos–Hänchen shift at normal incidence using Tamm plasmon polaritons
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DOI:10.1088/1361-6463/ae6126.png)
Abstract
En 中文
The Goos–Hänchen (GH) shift, a lateral displacement of an optical beam under total internal reflection, generally requires oblique incidence and remains reciprocal. Achieving a non-reciprocal GH shift at normal incidence via the magneto-optical effect is of great importance for ultra-compact integrated photonic systems, yet its typically weak magnitude has hindered practical implementation. Here, we propose a novel strategy that exploits the strong field localization of Tamm plasmon polaritons in a simple multilayer structure, enabling orders-of-magnitude enhancement of the non-reciprocal GH shift in both reflection and transmission at normal incidence. Furthermore, by incorporating parity-time symmetry, we demonstrate that this enhancement can be further increased. Our work establishes a compact and versatile platform for realizing pronounced non-reciprocal beam shifts, opening promising pathways toward on-chip photonic devices such as isolators, switchers, and sensors.
Keywords:
Goos–Hänchen shift
Tamm plasmon polaritons
non-reciprocal optical beam
normal incidence
parity-time symmetry
Journal
J
IF:
3.2
Papers:
726
Citations:
0
