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Microscopic Study on Excitation and Emission Enhancement by the Plasmon Mode on a Plasmonic Chip

机译:等离子体模式在等离子体芯片上的激励和排放增强的显微镜研究

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摘要

Excitation and emission enhancement by using the plasmon mode formed on a plasmonic chip was studied with a microscope and micro-spectroscope. Surface plasmon resonance wavelengths were observed on one-dimensional (1D) and two-dimensional (2D) plasmonic chips by measuring reflection and transmission spectra, and they were assigned to the plasmon modes predicted by the theoretical resonance wavelengths. The excitation and emission enhancements were evaluated using the fluorescence intensity of yellow–green fluorescence particles. The 2D grating had plasmon modes of kgx45(2) (diagonal direction with m = 2) in addition to the fundamental mode of kgx(1) (direction of a square one side) in the visible range. In epifluorescence detection, the excitation enhancement factors of kgx(2) on the 1D and 2D chips were found to be 1.3–1.4, and the emission enhancement factor of kgx45(2) on the 2D chip was 1.5–1.8, although the emission enhancement was not found on the 1D chip. Moreover, enhancement factors for the other fluorophores were also studied. The emission enhancement factor of kgx(1) was shown to depend on the fluorescence quantum yield. The emission enhancement of 2D was 1.3-fold larger than that of 1D considering all azimuth components, and the 2D pattern was shown to be advantageous for bright fluorescence microscopic observation.
机译:使用显微镜和微光谱腔研究通过使用在等离子体芯片上形成的等离子体模式来激发和发射增强。通过测量反射和透射光谱,在一维(1D)和二维(2D)等离子体芯片上观察到表面等离子体共振波长,并且分配给由理论谐振波长预测的等离子体模式。使用黄绿色荧光颗粒的荧光强度评估激发和发射增强。除了可见范围中的KGX(1)(方向一侧的方向)的基本模式之外,2D光栅还具有kGx45(2)(与M = 2的对角线方向)的等离子体模式。在渗流荧光检测中,发现1D和2D芯片上KGX(2)的激发增强因子是1.3-1.4,2D芯片上KGX45(2)的发射增强因子为1.5-1.8,虽然排放增强在1D芯片上找不到。此外,还研究了其他荧光团的增强因子。显示KGX(1)的发射增强因子取决于荧光量子产率。考虑所有方位角组分,2D的发射增强比1d大的排放增强为1.3倍,并且显示2D图案对于明亮的荧光显微镜观察是有利的。

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