Tunable Multi-switching in Plasmonic Waveguide with Kerr Nonlinear Resonator

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Abstract

We propose a nanoplasmonic waveguide side-coupled with bright-dark-dark resonators in our paper. A multi-oscillator theory derived from the typical two-oscillator model, is established to describe spectral features as well as slow-light effects in bright-dark-dark structures, and confirmed by the finite-difference time domain (FDTD). That a typical plasmon induced transparency (PIT) turns to double PIT spectra is observed in this waveguide structure. At the same time, multi-switching effects with obvious double slow-light bands based on double PIT are also discovered in our proposed structure. Whats more, dynamically tuning the multi-switching is achieved by means of filling Fabry-Perot resonators with the Kerr nonlinear material Ag-BaO. These results may have applications in all-optical devices, moreover, the multi-oscillator theory may play a guiding role in designing plasmonic devices.

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He, Z., Li, H., Zhan, S., Li, B., Chen, Z., & Xu, H. (2015). Tunable Multi-switching in Plasmonic Waveguide with Kerr Nonlinear Resonator. Scientific Reports, 5. https://doi.org/10.1038/srep15837

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