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Electromagnetically-induced transparency in a multi-cavity coupled waveguide system

机译:多腔耦合波导系统中的电磁感应透明性

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摘要

The plasmonic analogue of electromagnetically-induced transparency (EIT) was investigated in a plasmonic waveguide system composed of a straight waveguide, with rectangular and U-shaped (split-ring resonator) cavities. An EIT-like transparency window occurs in the transmitting spectrum of the waveguide system and the magnetic field is dramatically changed due to the destructive interference between two resonance pathways. It is demonstrated that the EIT-like spectra can be modified by varying the coupling strength and tailoring the degree of asymmetry of the structure, and we study the coupling mechanisms between the elements of the structure, including magnetic coupling, electric coupling, and inductive coupling. In addition, a cascaded structure which consists of an SRR pair with 180° rotation asymmetry has been studied. It is found that the strong couplings between two asymmetric plasmonic nanostructures can lead to EIT-like transmission in both visible and near-infrared regions, simultaneously.
机译:在包括矩形和U形(开口环谐振器)腔的直线波导组成的等离子体波导系统中,研究了电磁感应透明(EIT)的等离子体模拟。类似EIT的透明窗口出现在波导系统的传输光谱中,并且由于两个共振路径之间的相消干涉,磁场发生了巨大变化。结果表明,可以通过改变耦合强度和调整结构的不对称程度来修改类EIT光谱,并且我们研究了结构元素之间的耦合机理,包括磁耦合,电耦合和感应耦合。 。另外,已经研究了由具有180°旋转不对称性的SRR对组成的级联结构。发现两个不对称等离子体纳米结构之间的强耦合可以导致可见光和近红外区域中的EIT状透射同时发生。

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