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通过混合Tamm表面等离子体束缚态模式抑制辐射损耗。

Suppressing the radiation loss by hybrid Tamm-surface plasmon BIC modes.

作者信息

Qiao Tong, Hu Mengying, Wang Qiang, Xiao Meng, Zhu Shining, Liu Hui

出版信息

Opt Express. 2024 Jun 3;32(12):21497-21505. doi: 10.1364/OE.525338.

Abstract

Tamm plasmon polaritons (TPPs), localized near the boundary of a dielectric Bragg reflector (DBR) and a thin metal film, have attracted much attention for the lower ohm loss and flexible excitation. However, the radiation loss resulting from the direct coupling to the surroundings hinders their applications. Here, we propose and experimentally demonstrate a new type of hybrid plasmonic quasi-bound state in the continuum (BIC) in a Tamm-surface plasmon polariton system to suppress the radiation loss. Leveraging the scattering of the periodic metal array, the TPP interacts with the surface plasmon polariton (SPP) mode and form a Friedrich-Wintgen type quasi-BIC state that originated from the interference of two surface waves with different natures. Through angle resolved reflectance spectrum measurement, the hybrid plasmonic quasi-BIC was observed in the experiment. Our work proposes a new method to design a high Q mode in plasmonic systems, and thus holds promise for applications in the field of light matter interactions.

摘要

塔姆表面等离激元极化激元(TPPs)局域于介质布拉格反射器(DBR)与薄金属膜的边界附近,因其较低的欧姆损耗和灵活的激发方式而备受关注。然而,与周围环境直接耦合导致的辐射损耗阻碍了它们的应用。在此,我们提出并通过实验证明了一种新型的混合等离激元连续域中的准束缚态(BIC),该态存在于塔姆表面等离激元极化激元系统中,以抑制辐射损耗。利用周期性金属阵列的散射,TPP与表面等离激元极化激元(SPP)模式相互作用,形成一种弗里德里希 - 温特根型准BIC态,该态源于两种不同性质表面波的干涉。通过角分辨反射光谱测量,在实验中观测到了混合等离激元准BIC。我们的工作提出了一种在等离激元系统中设计高Q模式的新方法,因此在光与物质相互作用领域具有应用前景。

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