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首页> 外文期刊>Nanoscale >A spatially pinned surface plasmon through short-circuiting electronic oscillation in waveguide-sustained SPPs
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A spatially pinned surface plasmon through short-circuiting electronic oscillation in waveguide-sustained SPPs

机译:一个空间固定表面等离子体短路电子振荡waveguide-sustained许可证

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摘要

A spatially pinned surface plasmon is constructed by connecting a gold nanoshell grating with a planar gold nanofilm, forming a periodical array of gold nanoloops. Dramatic electric field modulation and high charge carrier density on the contact sites enable balanced plasmonic electron distribution over the spatially pinned nanostructures. Compared with its counterpart, spacer-supported double-layer surface plasmon polaritons (SPPs), the pinned structure not only changed the electronic oscillation channels but also short-circuited the propagating SPPs at the top and bottom interfaces. Ultrafast spectroscopic dynamics identified a much-extended relaxation lifetime of the pinned plasmon and revealed a holding time as long as 1.3 ps for the double-layer SPPs, which was sustained by microcavities based on distributed optical feedback. These results introduced a new type of surface plasmon and a new design of time retarders for optical logic circuits.
机译:一个空间固定表面等离子体通过连接一个黄金nanoshell光栅平面黄金nanofilm,形成一系列期刊黄金nanoloops。调制和高电荷密度的载体联系网站启用电子平衡电浆分布在空间固定纳米结构。spacer-supported双层表面等离子体极化声子(许可证),不仅固定结构但改变了电子振荡通道短路的传播许可证顶部和底部的接口。光谱动态确定延长放松的生命周期固定等离子体显示占用时间只要1.3 ps双层许可证,这是持续的基于分布式光学相结合反馈。表面等离子体和一个新设计的时间情况下的光学逻辑电路。

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