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A theory of waveguide design for plasmonic nanolasers

机译:电浆的波导设计理论

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摘要

We propose a theory for the waveguide design and analysis for plasmonic nanolasers by reformulating the fundamental waveguide requirements. This theory does not rely on further optimizing previously used structures, but examines each possible design without prejudice. Our exploration of one-dimensional (i.e., layered) plasmonic nanowaveguide geometries and the subsequent extension to 2D structures not only provides a deep understanding of the characteristics of currently used designs, but also leads to superior structures with the potential to address long-standing challenges in plasmonic nanolasers. In addition, we discover analogies between the reformulated fundamental requirements for the waveguide for nanolasers and nanoscale four-wave mixing (FWM) devices. Therefore, after a slight modification, our theory can also be applied to the waveguide design for plasmonic FWM devices.
机译:我们为波导的设计和提出一个理论分析电浆nanolasers申论基本波导要求。进一步优化之前使用结构,但检查每个可能的设计偏见。电浆nanowaveguide(例如,分层)几何图形和随后扩展到2 d结构不仅提供了一个深刻的理解目前使用的特点设计,但也导致优越的结构潜在的应对长期挑战电浆nanolasers。新配方基本之间的类比nanolasers波导和要求纳米级四波混频(光)设备。因此,稍微修改后,我们的理论也可以应用于波导设计电浆光设备。

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