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Achieving planar plasmonic subwavelength resolution using alternately arranged insulator-metal and insulator-insulator-metal composite structures

机译:使用交替排列的绝缘体-金属和绝缘体-绝缘体-金属复合结构实现平面等离子亚波长分辨率

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摘要

This work develops and analyzes a planar subwavelength device with the ability of one-dimensional resolution at visible frequencies that is based on alternately arranged insulator-metal (IM) and insulator-insulator-metal (IIM) composite structures. The mechanism for the proposed device to accomplish subwavelength resolution is elucidated by analyzing the dispersion relations of the IM-IIM composite structures. Electromagnetic simulations based on the finite element method (FEM) are performed to verify that the design of the device has subwavelength resolution. The ability of subwavelength resolution of the proposed device at various visible frequencies is achieved by slightly varying the constituent materials and geometric parameters. The proposed devices have potential applications in multi-functional material, real-time super-resolution imaging, and high-density photonic components.
机译:这项工作开发和分析了一种平面亚波长器件,该器件具有在可见频率处具有一维分辨率的能力,该器件基于交替排列的绝缘体-金属(IM)和绝缘体-绝缘体-金属(IIM)复合结构。通过分析IM-IIM复合结构的色散关系,阐明了该器件完成亚波长分辨率的机理。进行了基于有限元方法(FEM)的电磁仿真,以验证该设备的设计具有亚波长分辨率。通过稍微改变组成材料和几何参数,可以实现所提出的设备在各种可见频率下的亚波长分辨率。拟议中的设备在多功能材料,实时超分辨率成像和高密度光子组件中具有潜在的应用。

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