单等离子体纳米棒与WSe2单层强耦合产生的非线性光

H. Harutyunyan
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引用次数: 0

摘要

与金属等离子体纳米腔耦合的单层过渡金属二硫族化合物最近成为强光-物质相互作用的新平台。这些系统有望具有非线性光学特性,这将使它们能够用作纠缠光子源、紧凑的波混频装置以及经典和量子光子技术的其他元件。在这里,我们通过观察与单个金纳米棒强耦合的WSe2单层产生的二次谐波,首次对这些强耦合系统的非线性特性进行了实验研究。二次谐波信号的泵频依赖性表现出明显的分裂,这可以用二阶非线性的耦合振荡器模型来解释。利用传导电子的非摄动非线性流体动力学模型的严格数值模拟支持这一解释并再现了实验结果。因此,我们的研究为理解强耦合纳米级系统的非线性特性奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Light Generation from a Single Plasmonic Nanorod Strongly Coupled to a WSe2 Monolayer
Monolayer transition metal dichalcogenides, coupled to metal plasmonic nanocavities, have recently emerged as new platforms for strong light–matter interactions. These systems are expected to have nonlinear-optical properties that will enable them to be used as entangled photon sources, compact wave-mixing devices, and other elements for classical and quantum photonic technologies. Here, we report the first experimental investigation of the nonlinear properties of these strongly coupled systems, by observing second harmonic generation from a WSe2 monolayer strongly coupled to a single gold nanorod. The pump-frequency dependence of the second-harmonic signal displays a pronounced splitting that can be explained by a coupled-oscillator model with second-order nonlinearities. Rigorous numerical simulations utilizing a nonperturbative nonlinear hydrodynamic model of conduction electrons support this interpretation and reproduce experimental results. Our study thus lays the groundwork for understanding the nonlinear properties of strongly coupled nanoscale systems.
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