Optical bistability based on Bragg grating resonators in metal-insulator-metal plasmonic waveguides

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Abstract

An optically bistable device based on a Bragg grating resonator with a nonlinear medium in metal-insulator-metal waveguides is proposed. Its properties are numerically investigated by a finite-difference time-domain method and further qualitatively analyzed by adopting Airy equation. Cavities with different Q factors are compared with respect to bi-stability. Cavities with a small Q factor lead to a high transmission and a narrow hysteresis loop. The response time of such cavities is found to be in the sub-picosecond region. Our nano-scale switching structure is comparatively easy to fabricate and integrate in plasmonic circuits and promises to be useful for future alloptical computing and communication technology. Copyright © 2013 Author(s).

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Xiang, Y., Zhang, X., Cai, W., Wang, L., Ying, C., & Xu, J. (2013). Optical bistability based on Bragg grating resonators in metal-insulator-metal plasmonic waveguides. AIP Advances, 3(1). https://doi.org/10.1063/1.4775353

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