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首页> 外文期刊>Plasmonics >Tuning the Fano Resonance Between Localized and Propagating Surface Plasmon Resonances for Refractive Index Sensing Applications
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Tuning the Fano Resonance Between Localized and Propagating Surface Plasmon Resonances for Refractive Index Sensing Applications

机译:在折射率传感应用中调整局部和传播的表面等离振子共振之间的Fano共振

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Localized and propagating surface plasmon resonances are known to show very pronounced interactions if they are simultaneously excited in the same nanostructure. Here, we study the Fano interference that occurs between localized surface plasmon resonance (LSPR) and propagating surface plasmon polariton (SPP) modes by means of phase-sensitive spectroscopic ellipsometry. The sample structures consist of periodic gratings of gold nanodisks on top of a continuous gold layer and a thin dielectric spacer, in which the structural dimensions were tuned in such a way that the dipolar LSPR mode and the propagating SPP modes are excited in the same spectral region. We observe pronounced anti-crossing and strongly asymmetric line shapes when both modes move to each other's vicinity, accompanied of largely increased phase differences between the respective plasmon resonances. Moreover, we show that the anti-crossing can be exploited to increase the refractive index sensitivity of the localized modes dramatically, which result in largely increased values for the figure-of-merit which reaches values between 24 and 58 for the respective plasmon modes.
机译:如果在同一纳米结构中同时被激发,则局部和传播的表面等离子体激元共振会显示出非常明显的相互作用。在这里,我们通过相敏光谱椭圆偏振法研究在局部表面等离子体共振(LSPR)和传播表面等离子体极化(SPP)模式之间发生的Fano干扰。样品结构由位于连续金层顶部的金纳米盘的周期性光栅和薄介电层组成,其中结构尺寸的调整方式是,在相同的光谱中激发偶极LSPR模式和传播的SPP模式地区。当两种模式移动到彼此附近时,我们观察到明显的反交叉和强烈不对称的线形,伴随着各个等离激元共振之间的相位差大大增加。此外,我们表明,可以利用抗交叉来显着提高局部模式的折射率敏感性,从而导致品质因数的值大大增加,各个等离振子模式的值达到24到58之间。

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