Zhong Jin-Hui, Vogelsang Jan, Yi Jue-Min, Wang Dong, Wittenbecher Lukas, Mikaelsson Sara, Korte Anke, Chimeh Abbas, Arnold Cord L, Schaaf Peter, Runge Erich, Huillier Anne L', Mikkelsen Anders, Lienau Christoph
Institute of Physics, Carl von Ossietzky University, 26111, Oldenburg, Germany.
Department of Physics, Lund University, SE-221 00, Lund, Sweden.
Nat Commun. 2020 Mar 19;11(1):1464. doi: 10.1038/s41467-020-15232-w.
The integration of metallic plasmonic nanoantennas with quantum emitters can dramatically enhance coherent harmonic generation, often resulting from the coupling of fundamental plasmonic fields to higher-energy, electronic or excitonic transitions of quantum emitters. The ultrafast optical dynamics of such hybrid plasmon-emitter systems have rarely been explored. Here, we study those dynamics by interferometrically probing nonlinear optical emission from individual porous gold nanosponges infiltrated with zinc oxide (ZnO) emitters. Few-femtosecond time-resolved photoelectron emission microscopy reveals multiple long-lived localized plasmonic hot spot modes, at the surface of the randomly disordered nanosponges, that are resonant in a broad spectral range. The locally enhanced plasmonic near-field couples to the ZnO excitons, enhancing sum-frequency generation from individual hot spots and boosting resonant excitonic emission. The quantum pathways of the coupling are uncovered from a two-dimensional spectrum correlating fundamental plasmonic excitations to nonlinearly driven excitonic emissions. Our results offer new opportunities for enhancing and coherently controlling optical nonlinearities by exploiting nonlinear plasmon-quantum emitter coupling.
金属等离子体纳米天线与量子发射器的集成可以显著增强相干谐波的产生,这通常源于基本等离子体场与量子发射器的高能电子或激子跃迁的耦合。此类混合等离子体-发射器系统的超快光学动力学很少被研究。在这里,我们通过干涉探测单个渗透有氧化锌(ZnO)发射器的多孔金纳米海绵的非线性光发射来研究这些动力学。飞秒级时间分辨光电子发射显微镜揭示了在随机无序纳米海绵表面存在多种长寿命的局域等离子体热点模式,这些模式在很宽的光谱范围内发生共振。局部增强的等离子体近场与ZnO激子耦合,增强了单个热点的和频产生并促进了共振激子发射。通过将基本等离子体激发与非线性驱动的激子发射相关联的二维光谱,揭示了耦合的量子路径。我们的结果为通过利用非线性等离子体-量子发射器耦合来增强和相干控制光学非线性提供了新的机会。