Bian Yusheng, Zheng Zheng, Zhao Xin, Zhu Jinsong, Zhou Tao
School of Electronic and Information Engineering, Beihang University, 37 Xueyuan Rd, Beijing 100191, China.
Opt Express. 2009 Nov 9;17(23):21320-5. doi: 10.1364/OE.17.021320.
A two-dimensional symmetric hybrid plasmonic waveguide that integrates two high-refractive-index dielectric slabs with a finite-width insulator-metal-insulator (IMI) structure is proposed, and the characteristics of its long-range propagation mode are numerically analyzed at 1550 nm wavelength. In contrast to the previously studied structures, the gap between the slabs and the metal stripe and the associated field enhancement effect result in the dramatically modified modal behavior. It is shown that, under optimized configurations, the transmission loss can be reduced significantly with little change in the mode confinement capability compared to similar dielectric-loaded surface plasmon polariton waveguides. Studies on the crosstalk between adjacent such hybrid waveguides reveal the ability to increase the integration density by approximately 60 times compared with the traditional IMI structures when used in 3D photonic circuits. The studied waveguide could be an interesting alternative to realize high density photonic circuits.
提出了一种二维对称混合等离子体波导,该波导将两个高折射率介质平板与有限宽度的绝缘体-金属-绝缘体(IMI)结构集成在一起,并在1550nm波长下对其长程传播模式的特性进行了数值分析。与先前研究的结构相比,平板与金属条纹之间的间隙以及相关的场增强效应导致模式行为发生了显著改变。结果表明,在优化配置下,与类似的介质加载表面等离子体激元波导相比,传输损耗可以显著降低,而模式限制能力变化不大。对相邻此类混合波导之间串扰的研究表明,在3D光子电路中使用时,与传统IMI结构相比,集成密度能够提高约60倍。所研究的波导可能是实现高密度光子电路的一个有趣替代方案。