首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Plasmon induced transparency like transmission properties in compact MIM waveguide side-coupled with U-cavity
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Plasmon induced transparency like transmission properties in compact MIM waveguide side-coupled with U-cavity

机译:等离子体诱导的透明度如紧凑型MIM波导侧耦合U腔的透明度

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摘要

Surface plasmon polaritons (SPPs) can overcome the limitation of diffraction and control light at nanoscale, thus becoming a hotspot in recent years. SPPs based metal-insulator-metal (MIM) plasmonic waveguides using U-cavity and slot cavity are designed. The transmission characteristics are numerically simulated and verified by the coupled mode theory (CMT). Meanwhile, the effects of changing the geometric parameters on the transmission characteristics are also studied. Single and double plasmon induced transparency (PIT) effects are realized through the coupling and the destructive interfering between the transmission paths. Furthermore, characteristics of the refractive index sensing as well as the slow light and fast light effects are also investigated. We hope the designed waveguide structures along with their transmission characteristics have potential application prospects in the area of nanoscale integrated optical devices, such as filters, sensors, switches, slow/fast light devices, and other optoelectronic circuits.
机译:表面等离子体(SPP)可以克服纳米级衍射和控制光的限制,从而成为近年来的热点。设计了基于SPP的金属绝缘体 - 金属(MIM)使用U-腔和槽腔的等离子体波导。通过耦合模式理论(CMT)进行数值模拟和验证传输特性。同时,还研究了改变几何参数对传输特性的影响。通过耦合和传输路径之间的破坏性干扰来实现单次等离子体诱导的透明度(PIT)效应。此外,还研究了折射率感测的特征以及慢光和快速射击效果。我们希望设计的波导结构随着纳米级集成光学装置的面积具有潜在的应用前景,例如过滤器,传感器,开关,慢速/快速灯装置和其他光电器件。

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