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Optimization of SPR signals: Monitoring the physical structures and refractive indices of prisms

机译:SPR信号的优化:监控棱镜的物理结构和折射率

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Surface plasmon resonance (SPR) can only be achieved if sufficient energy is provided at the boundary between metal and dielectric. An employment of prism as a light coupler by using Kretschmann configuration is one of the alternative for the production of adequate energy to be generated as surface plasmon polaritons (SPP). This work is carried out to investigate the effect of physical structure of the prism and its refractive index to the excitation of SPPs. A 50nm gold thin metal film with dielectric constant of ε=-12.45i+1.3 was deposited on the hypotenuse surface of the prisms. The physical structures of the prisms were varied such as triangular, conical, hemispherical and half cylindrical. These prisms were classified into two types of refractive indices (RI), namely n=1.51(type BK7) and n=1.77(type SF11). Based on SPR curve analyses, we discovered that strong SPR signals which consist of 82.98% photons were excited as SPPs can be obtained by using type-BK7 prism with physical structures of hemispherical or half cylindrical. From the view of selectivity ability as sensors, the usage of type-SF11 prisms (half cylindrical and hemispherical) able to enhance this impressive feature in which sharp SPR curves with small FWHM values were obtained. In conclusion, apart from properties of thin film materials, the physical structure of prisms and their RI values play crucial roles to obtain optimum SPR signal. High sensitivity SPR sensor can be established with the appointment of type-BK7 prisms (hemispherical or half cylindrical shape) as light couplers.
机译:只有在金属和电介质之间的边界处提供足够的能量,才能实现表面等离子体共振(SPR)。通过使用Kretschmann配置作为光耦合器的棱镜的就业是作为表面等离子体极化子(SPP)产生足够能量的替代方案之一。开展这项工作以研究棱镜物理结构及其折射率对SPP的激发的影响。在棱镜的脊柱纤维表面上沉积了具有介电常数的50nm金薄金属膜。棱镜的物理结构变化,例如三角形,圆锥形,半球形和半圆柱形。将这些棱镜分为两种类型的折射率(RI),即n = 1.51(BK7)和N = 1.77(SF11型)。基于SPR曲线分析,我们发现,通过使用具有半球形或半圆柱的物理结构的BK7棱镜可以获得82.98%光子的强速SPR信号被激发为SPP。从选择性能力作为传感器的看法,可以使用类型-SF11棱镜(半圆柱形和半球形)的使用能够增强该令人印象深刻的特征,其中获得了具有小FWHM值的锐弹簧曲线。总之,除了薄膜材料的性质之外,棱镜的物理结构及其R 1值起到重要作用以获得最佳SPR信号。可以通过约为BK7棱镜(半球形或半圆柱形状)作为光耦合器来建立高灵敏度SPR传感器。

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