首页> 外文期刊>The Journal of Chemical Physics >Spectral variations in background light emission of surface-enhanced resonance hyper Raman scattering coupled with plasma resonance of individual silver nanoaggregates
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Spectral variations in background light emission of surface-enhanced resonance hyper Raman scattering coupled with plasma resonance of individual silver nanoaggregates

机译:表面增强共振高拉曼散射的背景光发射的光谱变化以及单个银纳米聚集体的等离子体共振

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摘要

We demonstrate the origin of spectral variations in background light emission of surface enhanced resonance hyper Raman scattering (SERHRS) from single Ag nanoaggregates. Ag nanoaggregate-by-nanoaggregate variations in background light emission spectra are related to plasma (plasmon) resonance spectra. Temporal variations in background light emission spectra with temporal blueshifts in plasma resonance spectra are also observed under continuous laser excitation. Both types of the variations in background light emission are reproduced by multiplying background light emission spectra measured from a Ag microaggregate by Lorentz function spectra derived from plasma resonance spectra. The reproduction reveals that second electromagnetic (EM) enhancement by plasma resonance is the origin of the variations. Additionally, spectral variations in background light emission of SERHRS are similar to that of surface enhanced resonance Raman scattering (SERRS). The similarity indicates that both types of background light emission commonly obtain second EM enhancement from identical plasma resonance.
机译:我们证明了从单个Ag纳米聚集体的表面增强共振超拉曼散射(SERHRS)的背景光发射中光谱变化的起源。 Ag纳米聚集体在背景发光光谱中的逐个变化与等离子体(等离子体)共振谱有关。在连续激光激发下,还观察到背景发光光谱的时间变化以及等离子体共振光谱的时间蓝移。通过将从Ag微聚集体中测得的背景发光光谱乘以从等离子体共振光谱得出的Lorentz函数光谱,可以再现两种类型的背景发光变化。复制品表明,等离子体共振引起的第二次电磁(EM)增强是变化的根源。此外,SERHRS的背景光发射光谱变化与表面增强共振拉曼散射(SERRS)相似。相似性表明,两种类型的背景光发射通常都从相同的等离子体共振获得第二个EM增强。

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