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首页> 外文期刊>Applied optics >Design and simulation of a nanoscale electro-plasmonic 1 × 2 switch based on asymmetric metal-insulator-metal stub filters
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Design and simulation of a nanoscale electro-plasmonic 1 × 2 switch based on asymmetric metal-insulator-metal stub filters

机译:基于不对称金属-绝缘体-金属短截线滤波器的纳米级电等离子体1×2开关的设计与仿真

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摘要

A compact nanoscale electro-plasmonic 1 × 2 switch based on asymmetrical metal-insulator-metal stub filters is introduced. The structure is designed and analyzed based on the transmission line method, and the switching operation of the device is numerically simulated and verified by the finite element method. It is found that by adjusting the length of the stubs on each output branch of the structure the surface plasmon polaritons (SPPs) are guided to only one of the output ports. By altering the refractive index of the electro-optical material (DAST) as the core of the structure with a 35 V applied voltage, the SPPs are steered to the opposite port. The reflected SPPs from one stub filter enhance the output intensity of another filter. The operating wavelength of the switch is the communication wavelength λ = 1550 nm. Nevertheless, it can be easily redesigned for another wavelength in the range of 800-2000 nm. The insertion losses and the extinction ratios guarantee an almost symmetrical switching for two outputs. The overall size of the switch is 800 nm × 450 nm × 750 nm. The bandwidth of the switch is anticipated over 100 GHz.
机译:介绍了一种基于不对称金属-绝缘体-金属短截线滤波器的紧凑型纳米电等离子体1×2开关。基于传输线方法设计和分析了该结构,并通过有限元方法对设备的开关操作进行了数值模拟和验证。发现通过调节结构的每个输出分支上的短截线的长度,表面等离激元极化子(SPP)仅被引导至其中一个输出端口。通过以35 V的施加电压改变作为结构核心的电光材料(DAST)的折射率,将SPP引导到相对的端口。一个存根滤波器反射的SPP增强了另一个滤波器的输出强度。开关的工作波长为通讯波长λ= 1550 nm。但是,可以很容易地将其重新设计为800-2000 nm范围内的另一个波长。插入损耗和消光比确保了两个输出几乎对称的切换。开关的总尺寸为800 nm×450 nm×750 nm。交换机的带宽预计超过100 GHz。

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