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具有高限制因子和超低增益阈值的钠基表面等离子体波导。

Sodium-based plasmonic waveguides with high confinement factors and ultra-low gain thresholds.

作者信息

Liu Huijuan, Liu Yuying, Teng Da

出版信息

Opt Lett. 2024 Oct 15;49(20):5850-5853. doi: 10.1364/OL.538092.

Abstract

The noble metal-based hybrid plasmon mode features low loss and strong field localization, making it widely applicable in the field of nanophotonic devices. However, due to the high loss of noble metals, the gain threshold is unacceptably high, usually larger than 0.1 µm. Here we present a hybrid plasmonic waveguide consisting of a SiO layer coated Na nanowire and a hexagonal semiconductor nanowire. Based on the high performance of the proposed waveguide, the Purcell factor exceeding 120 and a confinement factor above 90% are achieved, leading to an ultra-low gain threshold of 0.02117 µm. In addition, the proposed waveguide exhibits an extremely low cross talk, making it highly suitable for applications in compact photonic integrated devices. The proposed waveguide may contribute to the development of low-threshold nano-lasers and promote other applications in nanophotonics.

摘要

基于贵金属的混合等离激元模式具有低损耗和强场局域化的特点,使其在纳米光子器件领域具有广泛的应用。然而,由于贵金属的高损耗,增益阈值高得令人难以接受,通常大于0.1 μm。在此,我们提出一种由涂覆有SiO层的Na纳米线和六方半导体纳米线组成的混合等离激元波导。基于所提出波导的高性能,实现了超过120的珀塞尔因子和高于90%的限制因子,从而导致0.02117 μm的超低增益阈值。此外,所提出的波导表现出极低的串扰,使其非常适合用于紧凑型光子集成器件。所提出的波导可能有助于低阈值纳米激光器的发展,并推动纳米光子学中的其他应用。

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