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Surface plasmon resonance in nanostructured metal films under the Kretschmann configuration

机译:Kretschmann结构下纳米结构金属薄膜中的表面等离子体共振

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摘要

We systematically investigated the surface plasmon resonance in one-dimensional (1D) subwavelength nanostructured metal films under the Kretschmann configuration. We calculated the reflectance, transmittance, and absorption for varying the dielectric fill factor, the period of the 1D nanostructure, and the metal film thickness. We have found that the small dielectric slits in the metal films reduce the surface plasmon resonance angle and move it toward the critical angle for total internal reflection. The reduction in surface plasmon resonance angle in nanostructured metal films is due to the increased intrinsic free electron oscillation frequency in metal nanostructures. Also we have found that the increasing the spatial frequency of the 1D nanograting reduces the surface plasmon resonance angle, which indicates that less momentum is needed to match the momentum of the surface plasmon-polariton. The variation in the nanostructured metal film thickness changes the resonance angle slightly, but mainly remains as a mean to adjust the coupling between the incident optical wave and the surface plasmon-polariton wave. © 2009 American Institute of Physics.
机译:我们系统地研究了Kretschmann配置下一维(1D)亚波长纳米结构金属膜的表面等离子体共振。我们计算了反射率,透射率和吸收率,以改变介电填充因子,一维纳米结构的周期和金属膜厚度。我们已经发现,金属膜中的小电介质狭缝减小了表面等离振子共振角,并将其移向用于全内反射的临界角。纳米结构金属膜中表面等离子体激元共振角的减小是由于金属纳米结构中固有的自由电子振荡频率增加。我们还发现,增加一维纳米光栅的空间频率会降低表面等离激元共振角,这表明需要更少的动量来匹配表面等离激元极化子的动量。纳米结构金属膜厚度的变化稍微改变了共振角,但是主要仍然是调节入射光波与表面等离子体激元-极化波之间的耦合的手段。 ©2009美国物理研究所。

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