首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Tunability of reflection and transmission spectra of two periodically corrugated metallic plates, obtained by control of the interactions between plasmonic and photonic modes
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Tunability of reflection and transmission spectra of two periodically corrugated metallic plates, obtained by control of the interactions between plasmonic and photonic modes

机译:通过控制等离子和光子模式之间的相互作用获得的两个周期性波纹金属板的反射和透射光谱的可调谐性

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摘要

We theoretically study the interactions between plasmonic and photonic modes within a structure that is composed of two thin corrugated metallic plates, embedded in air. We show that the interactions depend on the symmetry of the interacting modes. This observation is explained by the phase difference between the Fourier components of the two gratings. The phase can be controlled by laterally shifting one grating with respect to the other. Therefore, this relative shift provides an efficient "knob" that allows one to control the interaction between the various modes, resulting in an efficient modulation of light transmission and reflection in the proposed structure. Based on this concept we show that the investigated structure can be used as a tunable plasmonic filter.
机译:我们从理论上研究了由两个嵌入空气中的波纹金属薄板构成的结构中的等离激元和光子模式之间的相互作用。我们证明了相互作用取决于相互作用模式的对称性。该观察结果由两个光栅的傅立叶分量之间的相位差解释。可以通过一个光栅相对于另一个光栅横向偏移来控制相位。因此,这种相对偏移提供了一种有效的“旋钮”,该旋钮可以控制各种模式之间的相互作用,从而在所提出的结构中有效地调制光的透射和反射。基于此概念,我们表明所研究的结构可用作可调等离子体滤波器。

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