论文标题

原子光滑的单晶平台,用于低损坏等离激液腔

Atomically smooth single-crystalline platform for low-loss plasmonic nanocavities

论文作者

Liu, Lufang, Krasavin, Alexey V., Zheng, Junsheng, Tong, Yuanbiao, Wang, Pan, Wu, Xiaofei, Hecht, Bert, Pan, Chenxinyu, Li, Jialin, Li, Linjun, Guo, Xin, Zayats, Anatoly V., Tong, Limin

论文摘要

在液化性血浆纳米纳米纳米腔(具有极端光学限制和增强)的纳米颗粒已触发了纳米光子学方面的最新进展,并在增强的光谱和分子检测中的应用中开发了应用。但是,这些纳米构造的光学质量因子和性能被用作镜子的颗粒多晶金属膜破坏。在这里,我们报告了一个原子平滑的单晶平台,用于使用化学合成的金微片作为镜子,用于低损失纳米腔。使用金纳米棒在此类微片上构建的纳米腔表现出丰富的等离子模式结构,对光学上薄(下至〜15 nm)微片的厚度高度敏感。与基于沉积膜相比,原子平滑的单晶微片质量含量显着提高了质量因子(约2次)和散射强度(约2次)和散射强度(约3次)。开发的低损失纳米腔进一步允许与成熟的光纤平台集成,这为实现具有高性能的基于纳米腔的微型光子设备提供了机会。

Nanoparticle-on-mirror plasmonic nanocavities, capable of extreme optical confinement and enhancement, have triggered state-of-the-art progress in nanophotonics and development of applications in enhanced spectroscopies and molecular detection. However, the optical quality factor and thus performance of these nanoconstructs are undermined by the granular polycrystalline metal films used as a mirror. Here, we report an atomically smooth single-crystalline platform for low-loss nanocavities using chemically-synthesized gold microflakes as a mirror. Nanocavities constructed using gold nanorods on such microflakes exhibit a rich structure of plasmonic modes, which are highly sensitive to the thickness of optically-thin (down to ~15 nm) microflakes. The atomically smooth single-crystalline microflakes endow nanocavities with significantly improved quality factor (~2 times) and scattering intensity (~3 times) compared with their counterparts based on deposited films. The developed low-loss nanocavities further allow for the integration with a mature platform of fiber optics, opening opportunities for realizing nanocavity-based miniaturized photonic devices with high performance.

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