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单层石墨烯等离子体激元中光学谐波产生的双稳性

Bistability of optical harmonic generation in monolayer graphene plasmonics.

作者信息

Li Xin, Tan Yunfeng, Yin Luying, Huo Yanyan, Zhao Lina, Yue Qingyang, Ning Tingyin

出版信息

Opt Lett. 2021 Mar 1;46(5):1029-1032. doi: 10.1364/OL.416543.

Abstract

We report the bistability of second- and third-harmonic generation in monolayer graphene plasmonics supported by graphene nanoribbon arrays. The nonlinear optical bistability of harmonic generation at the ultra-low threshold intensity ∼100/, along with the traditional linear optical bistability of transmittance, is observed due to the different local fundamental fields at the lower and higher state when the Kerr effect of graphene is considered. Importantly, the working fundamental wavelength can be tuned by the Fermi level of graphene and geometrical structure, which leads to the linear and nonlinear optical bistability available in a broadband for potential applications in advanced all-optical devices.

摘要

我们报道了由石墨烯纳米带阵列支撑的单层石墨烯等离子体激元中二次谐波和三次谐波产生的双稳性。考虑到石墨烯的克尔效应,由于较低和较高状态下不同的局部基频场,在超低阈值强度~100/时观察到谐波产生的非线性光学双稳性以及传统的透射率线性光学双稳性。重要的是,工作基波波长可以通过石墨烯的费米能级和几何结构进行调谐,这使得线性和非线性光学双稳性在宽带范围内可用,有望应用于先进的全光器件。

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