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基于绝缘体上硅(SOI)的混合等离子体金属狭缝波导中的纳米聚焦

Nanofocusing in SOI-based hybrid plasmonic metal slot waveguides.

作者信息

Güsken Nicholas A, Nielsen Michael P, Nguyen Ngoc B, Maier Stefan A, Oulton Rupert F

出版信息

Opt Express. 2018 Nov 12;26(23):30634-30643. doi: 10.1364/OE.26.030634.

Abstract

Through a process of efficient dielectric to metallic waveguide mode conversion, we calculate a >400-fold field intensity enhancement in a silicon photonics compatible nanofocusing device. A metallic slot waveguide sits on top of the silicon slab waveguide with nanofocusing being achieved by tapering the slot width gradually. We evaluate the conversion between the numerous photonic modes of the planar silicon waveguide slab and the most confined plasmonic mode of a 20 x 50 nm slot in the metallic film. With an efficiency of ~80%, this system enables remarkably effective nanofocusing, although the small amount of inter-mode coupling shows that this structure is not quite adiabatic. In order to couple photonic and plasmonic modes efficiently, in-plane focusing is required, simulated here by curved input grating couplers. The nanofocusing device shows how to efficiently bridge the photonic micro-regime and the plasmonic nano-regime whilst maintaining compatibility with the silicon photonics platform.

摘要

通过高效的介质到金属波导模式转换过程,我们计算出在一个与硅光子学兼容的纳米聚焦装置中,场强增强了400倍以上。一个金属狭缝波导位于硅平板波导之上,通过逐渐缩小狭缝宽度实现纳米聚焦。我们评估了平面硅波导平板的众多光子模式与金属膜中20×50nm狭缝的最受限等离子体模式之间的转换。该系统效率约为80%,能够实现非常有效的纳米聚焦,尽管少量的模式间耦合表明这种结构并非完全绝热。为了有效地耦合光子和等离子体模式,需要进行面内聚焦,这里通过弯曲输入光栅耦合器进行模拟。该纳米聚焦装置展示了如何在保持与硅光子学平台兼容的同时,有效地桥接光子微区和等离子体纳米区。

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