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A molecular spectroscopic view of surface plasmon enhanced resonance Raman scattering

机译:表面等离激元增强共振拉曼散射的分子光谱图

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The enhancement of resonance Raman scattering by coupling to the plasmon resonance of a metal nanoparticle is developed by treating the molecule-metal interaction as transition dipole coupling between the molecular electronic transition and the much stronger optical transition of the nanoparticle. A density matrix treatment accounts for coupling of both transitions to the electromagnetic field, near-resonant energy transfer between the molecule-excited and nanoparticle-excited states, and dephasing processes. This fully quantum mechanical approach reproduces the interference effects observed in extinction spectra of J-aggregated dyes adsorbed to metal nanoparticles and makes testable predictions for surface-enhanced resonance Raman excitation profiles. (c) 2008 American Institute of Physics.
机译:通过将分子-金属相互作用视为分子电子跃迁与纳米粒子的更强光学跃迁之间的跃迁偶极偶合,通过与金属纳米粒子的等离子体共振耦合而增强了共振拉曼散射。密度矩阵处理考虑了两个跃迁与电磁场的耦合,分子激发态和纳米粒子激发态之间的近共振能量转移以及移相过程。这种完全量子力学的方法再现了在J聚集的染料吸收到金属纳米粒子后的消光光谱中观察到的干扰效应,并对表面增强的共振拉曼激发曲线做出了可预测的预测。 (c)2008年美国物理研究所。

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