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沉积在等离子体金属上的光学聚合物反射光谱中的异常凹陷。

Anomalous dips in reflection spectra of optical polymers deposited on plasmonic metals.

作者信息

Shorter Ayanna, Chowdhury Md Golam Rabbani, Rout Sangeeta, Noginov Mikhail A

机构信息

Center for Materials Research, Norfolk State University, Norfolk, VA 23504, USA.

出版信息

Nanophotonics. 2023 Jan 24;12(3):631-636. doi: 10.1515/nanoph-2022-0450. eCollection 2023 Feb.

Abstract

We have studied reflection spectra of dye-doped and undoped polymers deposited onto Ag and Au substrates and found anomalous dips in the UV spectral range. On top of Ag substrates, the ∼ 375 nm dips were observed in undoped PMMA, PVP, and PS polymers as well as PMMA doped with Rh590 and HITC laser dyes. In silver-based samples, the spectral positions of the observed reflection dips were close to singularities in the refractive indexes of surface plasmon polaritons (SPPs) propagating at the interface between Ag and polymer. The latter singularities can tentatively explain the ∼ 375 nm reflection dips, if the scattering of Ag and polymeric films is large enough to launch SPP without any prism or grating. The dips observed in reflection of Rh590:PMMA and HITC:PMMA on top of Au, were more pronounced than those on Ag, broader, shifted to shorter wavelengths, and their spectral positions had large standard deviations. Furthermore, no anomalous dips in gold-based samples were observed in the reflection spectra of undoped PMMA, PVP, and PS polymers, and a modest singularity in the SPP refractive index, predicted theoretically at ∼ 500 nm, cannot explain the dips in the UV reflection spectra observed experimentally. It appears likely that the origin of the reflection dips on top of Au substrates is different from that on top of Ag substrates.

摘要

我们研究了沉积在银和金基底上的掺杂染料和未掺杂聚合物的反射光谱,发现在紫外光谱范围内存在异常凹陷。在银基底上,在未掺杂的聚甲基丙烯酸甲酯(PMMA)、聚乙烯吡咯烷酮(PVP)和聚苯乙烯(PS)聚合物以及掺杂了Rh590和HITC激光染料的PMMA中观察到约375nm的凹陷。在银基样品中,观察到的反射凹陷的光谱位置接近在银与聚合物界面传播的表面等离激元极化激元(SPP)折射率的奇异点。如果银和聚合物薄膜的散射足够大,能够在没有任何棱镜或光栅的情况下激发SPP,那么后一种奇异点可以初步解释约375nm的反射凹陷。在金基底上观察到的Rh590:PMMA和HITC:PMMA反射中的凹陷比在银基底上更明显、更宽,向更短波长移动,并且它们的光谱位置具有较大的标准偏差。此外,在未掺杂的PMMA、PVP和PS聚合物的反射光谱中,在金基样品中未观察到异常凹陷,并且理论上预测在约500nm处的SPP折射率中的适度奇异点无法解释实验观察到的紫外反射光谱中的凹陷。看来金基底上反射凹陷的起源与银基底上的不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a38e/11501773/039d4bcc8454/j_nanoph-2022-0450_fig_001.jpg

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