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Surface plasmon resonance spectroscopy on rotated sub-micrometer polymer gratings generated by UV-laser based two-beam interference

机译:基于紫外激光的两光束干涉产生的旋转亚微米聚合物光栅上的表面等离子体共振光谱

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Two-beam interference method was applied to generate gratings having periods of 416 nm and 833 nm by the forth harmonic of a Nd:Yag laser on thin poly-carbonate films spin-coated onto silver layer-covered substrates. The dependence of the modulation depth on the fluence and number of laser pulses was investigated by atomic force microscopy. A secondary pattern appeared on very thin polymer layers thanks to the "p" polarized laser beam illumination induced self-organized processes. The conditions of the emergence of grating-coupling Caused additional plasmon resonance peak were determined for the sub-micrometer periodic polymer gratings. Surface plasmon resonance measurements were performed in attenuated total reflection arrangement to determine the effect of the angle between the plasmon propagation direction and the polymer groves on the grating-coupling. The effect of the modulation depth on the grating-coupling caused additional resonance minimum was also analyzed. We found coupling phenomena according to our calculations, the differences between the measured and theoretically predicted resonance curves were explained by the scattering on the complex surface structure. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过将Nd:Yag激光的四次谐波应用于旋涂在覆盖有银层的基板上的薄聚碳酸酯薄膜上,采用两光束干涉法生成周期为416 nm和833 nm的光栅。通过原子力显微镜研究了调制深度对激光脉冲通量和数量的依赖性。由于“ p”偏振激光束照射引起的自组织过程,第二个图案出现在非常薄的聚合物层上。确定了亚微米周期性聚合物光栅引起的耦合耦合引起的附加等离子体激元共振峰的条件。表面等离子体激元共振测量以衰减全反射方式进行,以确定等离子体激元传播方向与聚合物凹槽之间的角度对光栅耦合的影响。还分析了调制深度对光栅耦合引起的附加共振最小值的影响。根据我们的计算发现耦合现象,通过复杂表面结构上的散射解释了测得的共振曲线与理论上预测的共振曲线之间的差异。 (c)2005 Elsevier B.V.保留所有权利。

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