Chen Yuntian, Gregersen Niels, Nielsen Torben Roland, Mørk Jesper, Lodahl Peter
Department of Photonics Engineering, DTU Fotonik, Ørsteds Plads, Building 343, DK- 2800 Kgs Lyngby, Denmark.
Opt Express. 2010 Jun 7;18(12):12489-98. doi: 10.1364/OE.18.012489.
We numerically investigate the coupling efficiency of a single self-assembled quantum dot to a metallic slot waveguide in the presence of leaky plasmonic modes. Leaky plasmonic modes refer to radiation modes with plasmonic features, resulting from the inhomogeneity of the dielectric environment in which the metallic slot waveguide is embedded. Compared to the ideal case of a homogenous dielectric environment, the coupling efficiency of an emitter to a metallic slot waveguide is significantly reduced. We attribute the reduction to the coupling to leaky plasmonic modes. By increasing the refractive index of the coating layer to minimize the impacts from the leaky plasmonic modes, we find that the coupling efficiency of the quantum dot to the single mode supported by the metallic slot waveguide can be enhanced by more than a factor 2.
我们通过数值方法研究了在存在泄漏表面等离激元模式的情况下,单个自组装量子点与金属槽波导之间的耦合效率。泄漏表面等离激元模式是指具有表面等离激元特征的辐射模式,它是由嵌入金属槽波导的介电环境的不均匀性产生的。与均匀介电环境的理想情况相比,发射器与金属槽波导之间的耦合效率显著降低。我们将这种降低归因于与泄漏表面等离激元模式的耦合。通过增加涂层的折射率以最小化泄漏表面等离激元模式的影响,我们发现量子点与金属槽波导所支持的单模之间的耦合效率可以提高两倍以上。