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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Visible light transmission properties of double metal thin gold films with sub-wavelength hole arrays
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Visible light transmission properties of double metal thin gold films with sub-wavelength hole arrays

机译:亚波长孔阵列的双金属金薄膜的可见光透射特性

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The transmission spectrum of linearly polarized visible light through double metal thin films perforated with nano-hole arrays is investigated and simulated by using the three dimensional finite-difference time-domain method. The results show that the transmission spectra can be controlled by changing the longitudinal interval G between films and, their lateral displacements L_x and L_y, which are parallel and perpendicular to the polarization direction of the incident light, respectively. We have two important peaks (due to guided mode and SP mode) in these spectrums. The variation in longitudinal distance results a wavelength shift in guided mode peak of transmission spectrum while the wavelength of SP mode peak remains fixed. The lateral displacement L_x leads to the higher transmission of the guided mode peak, while the lateral displacement L_y suppresses the transmission of this peak. Here we try to discuss the physical explanations of these spectral behaviours by surface plasmon waves on the metal films and by using the concepts of surface plasma (SP) and guided modes in our double metal structure.
机译:利用三维有限差分时域方法研究并模拟了线偏振可见光通过纳米孔阵列双金属薄膜的透射光谱。结果表明,可以通过改变膜之间的纵向间隔G及其横向位移L_x和L_y来控制透射光谱,该横向距离L_x和L_y分别与入射光的偏振方向平行和垂直。在这些频谱中,我们有两个重要的峰(归因于引导模式和SP模式)。纵向距离的变化导致透射光谱的导模峰的波长偏移,而SP模式峰的波长保持固定。横向位移L_x导致引导模式峰的较高透射,而横向位移L_y抑制该峰的透射。在这里,我们试图通过在金属膜上的表面等离激元波,以及在我们的双金属结构中使用表面等离子体(SP)和引导模式的概念,来讨论这些光谱行为的物理解释。

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