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    Hong-Xia Yuan, Jia-Xue Li, Qi-Jun Ma, Hai-Shan Tian, Yun-Yang Ye, Wen-Xin Luo, Xing-Hua Wu, Le-Yong Jiang. Controllable optical bistability in a Fabry–Pérot cavity with a nonlinear three-dimensional Dirac semimetalJ. Chin. Phys. B, 2024, 33(3): 034213.
    Hong-Xia Yuan, Jia-Xue Li, Qi-Jun Ma, Hai-Shan Tian, Yun-Yang Ye, Wen-Xin Luo, Xing-Hua Wu, Le-Yong Jiang. Controllable optical bistability in a Fabry–Pérot cavity with a nonlinear three-dimensional Dirac semimetalJ. Chin. Phys. B, 2024, 33(3): 034213.
  • Controllable optical bistability in a Fabry–Pérot cavity with a nonlinear three-dimensional Dirac semimetal

    • Optical bistability (OB) is capable of rapidly and reversibly transforming a parameter of an optical signal from one state to another, and homologous nonlinear optical bistable devices are core components of high-speed all-optical communication and all-optical networks. In this paper, we theoretically investigated the controllable OB from a Fabry–Pérot (FP) cavity with a nonlinear three-dimensional Dirac semimetal (3D DSM) in the terahertz band. The OB stems from the third-order nonlinear bulk conductivity of the 3D DSM and the resonance mode has a positive effect on the generation of OB. This FP cavity structure is able to tune the OB because the transmittance and the reflectance can be modulated by the Fermi energy of the 3D DSM. We believe that this FP cavity configuration could provide a reference concept for realizing tunable bistable devices.
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