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Nonlocal optical effects on the fluorescence and decay rates for admolecules at a metallic nanoparticle

机译:非局部光学效应对金属纳米粒子分子的荧光和衰变速率的影响

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摘要

A phenomenological model is implemented to study the decay rates of fluorescing molecules in the vicinity of a metallic nanoparticle, wherein the nonlocal optical response of the particle is accounted for via the hydrodynamic model for the description of the free electrons in the metal. These nonlocal effects are examined for each of the radiative rate and the nonradiative rate of the admolecule, respectively. In addition, the overall fluorescence rate which includes the enhancement ratio for the driving field intensity is also studied. It is found that for particles of very small sizes (< 10 nm), the nonlocal effects, in general, lead to significantly greater fluorescence rates and smaller nonradiative decay rates for the admolecules, with the effects on radiative rates depending crucially on the orientation of the molecules. Furthermore, the effects are mostly noticeable for molecules close to the metal particle and in processes where higher multipolar interactions are significant such as those in nonradiative decay processes. Above all, these nonlocal effects can still be observable in the presence of large surface damping imposed on the metallic electrons due to the ultrasmall sizes of these nanoparticles. The relevance of these effects to some of the latest experiments is discussed. (C) 2007 American Institute of Physics.
机译:实施了一种现象学模型来研究金属纳米粒子附近的发荧光分子的衰减速率,其中通过流体动力学模型解释了粒子的非局部光学响应,以描述金属中的自由电子。分别针对大分子的辐射率和非辐射率分别检查这些非局部效应。另外,还研究了包括驱动场强度的增强率在内的总荧光率。已发现,对于非常小的尺寸(<10 nm)的粒子,非局部效应通常会导致大分子的荧光速率显着提高,非辐射衰变速率更小,对辐射速率的影响主要取决于分子的方向。分子。此外,对于靠近金属粒子的分子以及在较高的多极相互作用显着的过程中(例如在非辐射衰变过程中),该影响最明显。最重要的是,由于这些纳米粒子的超小尺寸,在施加在金属电子上的表面阻尼较大的情况下,仍然可以观察到这些非局部效应。讨论了这些效应与一些最新实验的相关性。 (C)2007美国物理研究所。

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