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表面等离激元与分子共振耦合产生的共振猝灭和导模。

Resonance quenching and guided modes arising from the coupling of surface plasmons with a molecular resonance.

机构信息

Department of Chemical and Biological Engineering, Iowa State University, Ames, Iowa 50011, United States.

出版信息

Anal Chem. 2012 Jan 17;84(2):1139-45. doi: 10.1021/ac202855a. Epub 2011 Dec 22.

Abstract

In this paper, we describe experimental and modeling results that illucidate the nature of coupling between surface plasmon polaritons in a thin silver film with the molecular resonance of a zinc phthalocyanine dye film. This coupling leads to several phenomena not generally observed when plasmons are coupled to transparent materials. The increased absorption coefficient near a molecular resonance leads to a discontinuity in the refractive index, which causes branching of the plasmon resonance condition and the appearance of two peaks in the p-polarized reflectance spectrum. A gap exists between these peaks in the region of the spectrum associated with the molecular resonance and reflects quenching of the plasmon wave due to violation of the resonance condition. A second observation is the appearance of a peak in the s-polarized reflection spectra. The initial position of this peak corresponds to where the refractive index of the adsorbate achieves its largest value, which occurs at wavelengths just slightly larger than the maximum in the molecular resonance. Although this peak initially appears to be nondispersive, both experimental data and optical modeling indicate that increasing the film thickness shifts the peak position to longer wavelengths, which implies that this peak is not associated with the molecular resonance but, rather, is dispersive in nature. Indeed, modeling shows that this peak is due to a guided mode in the film, which appears in these conditions due to the abnormally high refractive index of the film near the absorbance maximum. Results also show that, with increasing film thickness, numerous additional guided modes appear and move throughout the visible spectrum for both s- and p-polarized light. Notably, these guided modes are also quenched near the location of the molecular resonance. The quenching of both the plasmon resonance and the guided modes can be explained by a large decrease in the in-plane wave propagation length that occurs near the molecular resonance, which is a direct result of the film's large absorption coefficient.

摘要

本文描述了实验和建模结果,阐明了薄银膜中的表面等离子体激元与锌酞菁染料膜的分子共振之间的耦合性质。这种耦合导致了一些通常在等离子体与透明材料耦合时观察不到的现象。分子共振附近吸收系数的增加导致折射率的不连续性,这导致等离子体共振条件的分支和在 p 偏振反射率谱中出现两个峰。在与分子共振相关的光谱区域中,这些峰之间存在一个间隙,反映了由于共振条件的违反而导致等离子体波的猝灭。第二个观察结果是在 s 偏振反射光谱中出现一个峰。该峰的初始位置对应于吸附物的折射率达到最大值的位置,该位置发生在比分子共振最大值稍大的波长处。尽管这个峰最初似乎是非色散的,但实验数据和光学建模都表明,随着膜厚度的增加,峰的位置会向长波长移动,这意味着这个峰与分子共振无关,而是具有色散性质。事实上,建模表明,这个峰是由于膜中的导模引起的,在这种情况下,由于膜在吸收最大值附近的折射率异常高,因此会出现这种导模。结果还表明,随着膜厚度的增加,s 和 p 偏振光在整个可见光谱范围内都会出现并移动许多额外的导模。值得注意的是,这些导模在分子共振附近也会被猝灭。等离子体共振和导模的猝灭可以用在分子共振附近发生的平面波传播长度的大幅减小来解释,这是膜的大吸收系数的直接结果。

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