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首页> 外文期刊>Applied Sciences >A Metal-Insulator-Metal Deep Subwavelength Cavity Based on Cutoff Frequency Modulation
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A Metal-Insulator-Metal Deep Subwavelength Cavity Based on Cutoff Frequency Modulation

机译:基于截止频率调制的金属-绝缘体-金属深亚波长腔

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摘要

We propose a plasmonic cavity using the cutoff frequency of a metal-insulator-metal (MIM) first-order waveguide mode, which has a deep subwavelength physical size of 240 × 210 × 10 (nm 3 ) = 0.00013 λ 0 3 . The cutoff frequency is a unique property of the first-order waveguide mode and provides an effective mode gap mirror. The cutoff frequency has strong dependence on a variety of parameters including the waveguide width, insulator thickness, and insulator index. We suggest new plasmon cavities using three types of cutoff frequency modulations. The light can be confined in the cavity photonically, which is based on the spatial change of the cutoff frequency. Furthermore, we analyze cavity loss by investigating the metallic absorption, radiation, and waveguide coupling loss; the radiation loss of the higher-order cavity mode can be suppressed by multipole cancellation.
机译:我们使用金属-绝缘体-金属(MIM)一阶波导模式的截止频率提出了一个等离子体腔,该等离子体腔的深亚波长物理尺寸为240×210×10(nm 3)= 0.00013λ0 3。截止频率是一阶波导模式的独特属性,并提供有效的模式间隙镜。截止频率强烈依赖于各种参数,包括波导宽度,绝缘体厚度和绝缘体指数。我们建议使用三种截止频率调制类型的新等离子体腔。可以根据截止频率的空间变化将光以光子方式限制在腔中。此外,我们通过研究金属的吸收,辐射和波导耦合损耗来分析空腔损耗。通过多极抵消可以抑制高阶腔模的辐射损耗。

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