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由于超材料平板的等离子体共振导致的倏逝场增强。

Evanescent field enhancement due to plasmonic resonances of a metamaterial slab.

作者信息

Chiu K P, Kao T S, Tsai D P

机构信息

Center of Nanostorage Research, National Taiwan University, Taipei, Taiwan, ROC.

出版信息

J Microsc. 2008 Feb;229(Pt 2):313-9. doi: 10.1111/j.1365-2818.2008.01906.x.

Abstract

The characteristics of plasmonic resonance in a dielectric-sandwiched metamaterial film at visible wavelengths of 650 and 568 nm have been investigated (for both p- and s-polarized light). Our calculated results demonstrate that each mode of plasmonic resonance has maximum resonance strength at a particular film thickness of the metamaterial. We also demonstrated that the effect of evanescent field enhancement is due to plasmonic resonances of the sandwiched metamaterial system. And the stronger the plasmonic resonance strength the larger the evanescent field is enhanced at the interfaces of the metamaterial film. Also we see that the plasmonic resonances in a sandwiched metamaterial are influenced not only by the materials that constitute the interfaces but also by the thickness of surrounding dielectrics or distance between evanescent light source and metamaterial film. Finally, our results show that there might be an effective light propagation length that will let the coupling efficiency between evanescent light source and SPs resonance become a maximum. These properties of plasmonic resonances to structure parameters of metamaterial film and its surrounding dielectrics provide a useful way to control the optical responses of an optoelectronic device when the wavelength of light source is fixed. That is, by suitably choosing light polarizations, thickness of the metamaterial thin film or the surrounding dielectrics and the position of evanescent light source, it is possible to modulate the plasmonic resonance wavenumber or resonance strength of the system. Therefore, the optical responses of the system can be modulated. Our results will be helpful for the structure design to control the behaviours of coupled plasmonic resonances and consequently the optical properties of the dielectric-sandwiched metamaterial film.

摘要

研究了在650和568nm可见波长下,夹在电介质中的超材料薄膜中的等离子体共振特性(针对p偏振光和s偏振光)。我们的计算结果表明,等离子体共振的每种模式在超材料的特定薄膜厚度处具有最大共振强度。我们还证明了倏逝场增强效应是由于夹在中间的超材料系统的等离子体共振引起的。等离子体共振强度越强,在超材料薄膜界面处倏逝场增强越大。我们还发现,夹在中间的超材料中的等离子体共振不仅受到构成界面的材料的影响,还受到周围电介质的厚度或倏逝光源与超材料薄膜之间距离的影响。最后,我们的结果表明,可能存在一个有效的光传播长度,使得倏逝光源与表面等离激元共振之间的耦合效率达到最大值。等离子体共振对超材料薄膜及其周围电介质的结构参数的这些特性,为在光源波长固定时控制光电器件的光学响应提供了一种有用的方法。也就是说,通过适当地选择光偏振、超材料薄膜或周围电介质的厚度以及倏逝光源的位置,可以调制系统的等离子体共振波数或共振强度。因此,可以调制系统的光学响应。我们的结果将有助于结构设计,以控制耦合等离子体共振的行为,从而控制夹在电介质中的超材料薄膜的光学性质。

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