Ding Li, Qin Jin, Xu Kai, Wang Liang
Opt Express. 2016 Feb 22;24(4):3432-40. doi: 10.1364/OE.24.003432.
We studied a novel long range hybrid tube-wedge plasmonic (LRHTWP) waveguide consisting of a high index dielectric nanotube placed above a triangular metal wedge substrate. Using comprehensive numerical simulations on guiding properties of the designed waveguide, it is found that extreme light confinement and low propagation loss are obtained due to strong coupling between dielectric nanotube mode and wedge plasmon polariton. Comparing with previous studied hybrid plasmonic waveguides, the LRHTWP waveguide has longer propagation length and tighter mode confinement. In addition, the LRHTWP waveguide is quite tolerant to practical fabrication errors such as variation of the wedge tip angle and the horizontal misalignment between the nanotube and the metal wedge. The proposed LRHTWP waveguide could have many application potentials for various high performance nanophotonic components.
我们研究了一种新型的长程混合管楔等离子体(LRHTWP)波导,它由置于三角形金属楔基底上方的高折射率介质纳米管组成。通过对设计波导的导波特性进行全面的数值模拟,发现由于介质纳米管模式与楔等离子体极化激元之间的强耦合,实现了极强的光限制和低传播损耗。与先前研究的混合等离子体波导相比,LRHTWP波导具有更长的传播长度和更紧密的模式限制。此外,LRHTWP波导对诸如楔尖角度变化以及纳米管与金属楔之间的水平错位等实际制造误差具有相当高的耐受性。所提出的LRHTWP波导在各种高性能纳米光子学元件方面可能具有许多应用潜力。