Muskens O L, Giannini V, Sanchez-Gil J A, Gómez Rivas J
FOM Institute for Atomic and Molecular Physics AMOLF, c/o Philips Research Laboratories, High Tech Campus 4, 5656 AE Eindhoven, The Netherlands.
Nano Lett. 2007 Sep;7(9):2871-5. doi: 10.1021/nl0715847. Epub 2007 Aug 7.
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluorescent dye molecules around resonant optical nanoantennas. The plasmonic modes of individual gold dimer antennas are tuned by the particle length and the antenna gap, providing control over both the spectral resonance position and the near-field mode profile of the nanoantenna. Resonant enhancement of the radiative and nonradiative decay rates of a fluorescent dye is observed, resulting in an increase of the internal quantum efficiency from 40% up to 53% for single antennas, and up to 59% for antenna clusters. This improvement of the already high quantum efficiency of the dye molecules is in agreement with electrodynamic model calculations that predict a maximum attainable efficiency around 80% due to nonradiative losses in the metal.
我们展示了在共振光学纳米天线周围,高效荧光染料分子的辐射衰减率有5倍的显著增强。单个金二聚体天线的等离子体模式可通过粒子长度和天线间隙进行调节,从而实现对纳米天线的光谱共振位置和近场模式分布的控制。观察到荧光染料的辐射和非辐射衰减率的共振增强,对于单个天线,内部量子效率从40%提高到53%,对于天线簇则提高到59%。染料分子本已很高的量子效率的这种提高,与电动力学模型计算结果一致,该计算预测由于金属中的非辐射损耗,最大可达到的效率约为80%。