Nanoscience Center, Department of Physics, University of Jyväskylä, Jyväskylä, P.O. Box 35, FI-40014, Finland.
J Chem Phys. 2013 Jan 28;138(4):044707. doi: 10.1063/1.4776233.
In this article we experimentally demonstrate the strong coupling between surface plasmon polaritons (SPP) and the S(2) state of β-carotene. The SPPs are excited by prism coupling technique on a thin silver film with β-carotene embedded in a polymer layer on top of that. Rabi splittings with energies 80 and 130 meV are observed in the recorded dispersion relations. Both coupled oscillator model and transfer matrix method are used to fit the experimental results. The scattered radiation of the propagating strongly coupled SPP-S(2) hybrids is collected and an increase of the low energy splitting to 120 meV is observed compared to the reflectivity data. In addition, we performed molecule excitation by laser and analyzed the emission patterns revealing clear surface plasmon coupled fluorescence of β-carotene. By increasing the concentration of β-carotene we are able to collect also surface plasmon coupled Raman scattering. This study substantially extends the SPP-molecular excitation strong coupling studies to biomolecules, and energy transfer and coupling properties of excited states of carotenoids.
本文通过实验演示了表面等离激元(SPP)与β-胡萝卜素 S(2)态之间的强耦合。通过在薄银膜上的棱镜耦合技术激发出 SPP,β-胡萝卜素嵌入在聚合物层的顶部。在记录的色散关系中观察到能量为 80 和 130 meV 的拉比分裂。采用耦合振子模型和转移矩阵方法对实验结果进行拟合。收集传播的强耦合 SPP-S(2)杂化体的散射辐射,并观察到与反射率数据相比,低能分裂增加到 120 meV。此外,我们通过激光激发分子并分析发射模式,揭示了β-胡萝卜素的明显表面等离激元耦合荧光。通过增加β-胡萝卜素的浓度,我们还能够收集到表面等离激元耦合拉曼散射。这项研究将 SPP-分子激发强耦合研究扩展到了生物分子以及类胡萝卜素激发态的能量转移和耦合性质。