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Strong Coupling between a Quasi-single Molecule and a Plasmonic Cavity in the Trapping System

机译:捕集系统中准单分子与等离子腔之间的强耦合

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摘要

We theoretically investigate the strong coupling phenomenon between a quasi-single molecule and a plasmonic cavity based on the blue-detuned trapping system. The trapping system is made up of a metallic nanohole array. A finite-difference time-domain method is employed to simulate the system, and the molecule is treated as a dipole in simulations. By calculating the electromagnetic field distributions, we obtain the best position for trapping a molecule, and we get the strong coupling phenomenon that there are two splitting peaks in the transmission spectrum when the molecule is trapped in the structure, while only one peak is observed in the one without the molecule. We also find that only when the molecule polarization parallels to the incident light wave vector can we observe a strong coupling phenomenon.
机译:我们从理论上研究了基于蓝失谐俘获系统的准单分子与等离子体腔之间的强耦合现象。捕集系统由金属纳米孔阵列组成。采用时域有限差分法对系统进行仿真,在模拟中将分子视为偶极子。通过计算电磁场分布,我们获得了捕获分子的最佳位置,并且得到了强耦合现象:当分子被捕获在结构中时,透射光谱中有两个分裂峰,而在分子中仅观察到一个峰。一个没有分子的人。我们还发现,只有当分子偏振平行于入射光波矢量时,我们才能观察到强耦合现象。

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