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Influence of electromagnetic (EM) waves polarization modes on surface plasmon resonance

机译:电磁波极化模式对表面等离子体共振的影响

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Optical sensor based on surface plasmon resonance are widely used for various applications. In this paper, an optimization of EM waves polarization modes for the occurrence of SPR by using a modified optical waveguiding assembly has been discussed. A 633 nm of linearly polarized He-Ne laser was appointed as a light source. The polarization modes were controlled by rotating the position of He-Ne laser. It was found that the optimum SPR signal with reflectance, R = 0.21 a.u and SPR angle, θ_(SPR) = 48° can be obtained as the position of laser was rotated at 90°, with the presence of polarizer. The location of the critical angle was observed at θ_(C) = 46°. For the validation purpose, a simulation based on Fresnel equation was conducted where the percentage difference between the experimental and theoretical results were analyzed. The percentage difference between experimental and theoretical results for both θSPR and θC were 9.09% and 15.00% respectively. In conclusion, an excellent agreement between the theoretical and experimental findings proved the stability of this SPR setup, where the EM waves polarization can easily be controlled by manipulating the position of laser.
机译:基于表面等离子体共振的光学传感器被广泛用于各种应用。本文讨论了通过使用改进的光波导组件来优化SPR发生的EM波偏振模式。 633 nm的线性偏振He-Ne激光器被指定为光源。通过旋转氦氖激光器的位置来控制偏振模式。发现在偏振器存在的情况下,当激光的位置旋转90°时,可以获得反射率R = 0.21 a.u和SPR角θ_(SPR)= 48°的最佳SPR信号。在θ_(C)= 46°时观察到临界角的位置。为了验证目的,基于菲涅耳方程进行了仿真,其中分析了实验结果与理论结果之间的百分比差异。 θSPR和θC的实验结果和理论结果之间的百分比差异分别为9.09%和15.00%。总而言之,理论和实验结果之间的极好的一致性证明了这种SPR装置的稳定性,其中通过控制激光的位置可以轻松控制EM波的偏振。

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