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Nano plasmon array for detection of light propagation in waveguide

机译:用于检测波导中光传播的纳米等离子体激元阵列

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Nowadays, applications of surface plasmon (SP) were highlighted for facilitating the all integrated optical circuit in nano space. We introduce the design and fabrication of a periodic array of gold nanostructure for detection of light which is propagated in a SiON waveguide. The gold nanostructures are designed using Finite Element Method (FEM) and fabricated by electron beam lithography and lift-off processes. The array is composed of 5 nano rods. The nanorod has 50 nm height, 100 nm width and 15 urn length. The enhancement of light at nano array was detected. Below the specific distance between nano array and waveguide, the nano array can detect the evanescent tail of light. The results demonstrate nanorods array can verify the fact that the incident light propagates in a waveguide or not when optical components are densely integrated.
机译:如今,表面等离子体激元(SP)的应用被重点介绍,以促进纳米空间中的所有集成光路。我们介绍了金纳米结构的周期性阵列的设计和制造,用于检测在SiON波导中传播的光。金纳米结构是使用有限元方法(FEM)设计的,并通过电子束光刻和剥离工艺制造。该阵列由5个纳米棒组成。纳米棒的高度为50 nm,宽度为100 nm,长度为15。检测到纳米阵列处的光增强。在纳米阵列和波导之间的特定距离以下,纳米阵列可以检测到光的e逝尾。结果表明,当光学组件紧密集成时,纳米棒阵列可以验证入射光是否在波导中传播的事实。

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