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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Hybrid dielectric-loaded plasmonic waveguide and wavelength selective components for efficiently controlling light at subwavelength scale
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Hybrid dielectric-loaded plasmonic waveguide and wavelength selective components for efficiently controlling light at subwavelength scale

机译:负载电介质的等离激元混合波导和波长选择组件,可有效控制亚波长范围的光

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摘要

We analyze and design a hybrid dielectric-loaded plasmonic waveguide (HDLW) featuring a long propagation length and strong field confinement, for efficient control and confinement of light in the subwavelength area of λ2/160. The HDLW is then used to build compact wavelength selective components of high optical performance, including ring resonators (RR) and add-drop filters (ADF). In particular, we demonstrate RRs having a small ring radius of 2 μm, a low transmission loss of 0:8 dB, a high extinction ratio of 21 dB, and a free spectral range of 66nm. Moreover, an ADF with a ring radius of 2 μm features a 12 dB extinction ratio, a transmission loss of 0:9 dB, and a channel isolation level of 10 dB at the resonant wavelength. The compact footprint and superior performance of these plasmonic components make them promising building blocks for future nanoscale electronic-photonic integrated circuits for data communication and sensing applications.
机译:我们分析并设计了一种具有长传播长度和强电场限制的混合介质加载等离子体激元波导(HDLW),以有效控制和限制λ2/ 160子波长区域内的光。然后,HDLW用于构建具有高光学性能的紧凑型波长选择组件,包括环形谐振器(RR)和分插滤波器(ADF)。特别是,我们展示了具有2μm小环半径,0:8 dB的低传输损耗,21 dB的高消光比和66nm的自由光谱范围的RR。此外,环形半径为2μm的ADF的消光比为12 dB,传输损耗为0:9 dB,在谐振波长处的通道隔离度为10 dB。这些等离激元组件的紧凑占位面积和卓越性能使其成为有前途的构建单元,可用于未来用于数据通信和传感应用的纳米级电子光子集成电路。

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