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Cylindrical hybrid plasmonic waveguide for a nano-scale light confinement

机译:圆柱混合等离子体波导,用于纳米级光限制

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In order to improve integration density, it is essential to develop a nano-scale optical waveguide which is the key element to build varies of optical components. In this paper, a novel cylindrical hybrid plasmonic waveguide, which has an air core surrounded by a metal layer and a silicon layer, is proposed to achieve nano-scale confinement of light at the operating wavelength of 1550nm. And there is a low-index material nano-layer between the metal layer and the silicon layer, in which the field enhancement provides a nano-scale confinement of the optical field. The relations between the characteristics of the bound modes, including the effective mode indices, propagation lengths, mode sizes, mode shapes and parameters of the plasmonic waveguide are numerically investigated in detail. The simulation results show that the nano-scale confinement can be realized and the proposed hybrid plasmonic waveguide has a potential application in high density photonic integration.
机译:为了提高积分密度,必须开发一个纳米级光波导,这是构建光学部件的变化的关键元件。本文提出了一种新型圆柱混合等离子体波导,其具有由金属层和硅层围绕的空气芯,以实现在1550nm的工作波长下的纳米尺度限制光。在金属层和硅层之间存在低折射率材料纳米层,其中场增强提供了光学场的纳米级限制。结合模式的特性之间的关系,包括有效模式指数,传播长度,模式尺寸,模式形状和等离子体波导的参数。详细研究。仿真结果表明,可以实现纳米尺度限制,并且所提出的混合等离子体波导具有高密度光子集成的潜在应用。

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