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Quality-factor enhancement of Fano resonance in asymmetric-double-bar metamaterials by alternately arranging inversed unit cells in the optical region

机译:通过在光学区域中交替排列倒置的晶胞,提高非对称双棒超材料中Fano共振的品质因数

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Metamaterials are artificial structures with exotic electromagnetic response: negative refraction, sub-wavelength focusing, and so on. Although characteristics of metamaterials are almost determined by unit cell structure, coupling effects among unit cells also have an important role in engineering electromagnetic response of metamaterials. In this study, we investigated Q-factors of Fano resonance in optical metamaterials having alternate arrangement of inversed asymmetric double bars (ADBs) to study effects of neighboring unit cell. An ADB is a pair of metal bars with slightly different bar lengths. Fano resonance with a high Q-factor was excited because of small asymmetry of an ADB. Alternate arrangement of inversed unit cells, in which the positions of the long bar and the short bar in neighboring unit cells were interchanged each other, was introduced into ADB metamaterials and its effect on the Q-factor was investigated. ADB metamaterials were fabricated by a lift-off method and optical spectra were measured. The Q-factors of Fano resonance around a wavelength of 1500 ran were estimated from absorption peaks, and dependence of a degree of asymmetry was studied. The Q-factor had strong dependence of asymmetry. Moreover, the Q-factors for alternate arrangement of inversed unit cells were higher than that for normally periodic arrangement. The enhancement is qualitatively expressed by interaction of magnetic dipoles among neighboring unit cells.
机译:超材料是具有奇特电磁响应的人造结构:负折射,亚波长聚焦等。尽管超材料的特性几乎由晶胞结构决定,但晶胞之间的耦合效应在超材料的电磁响应工程中也具有重要作用。在这项研究中,我们调查了具有反向不对称双棒(ADB)交替排列的光学超材料中的Fano共振的Q因子,以研究相邻晶胞的影响。 ADB是一对金属棒,其棒长略有不同。由于ADB的不对称性小,因此激发了具有高Q因子的Fano共振。将反向单位晶胞的交替排列(其中相邻单位晶胞中的长条和短条的位置彼此互换)引入ADB超材料中,并研究其对Q因子的影响。通过剥离法制造亚行超材料,并测量其光谱。从吸收峰估计了1500nm波长附近的Fano共振的Q因子,并且研究了不对称程度的依赖性。 Q因子强烈依赖于不对称性。而且,倒置晶胞的交替排列的Q因子高于正常周期性排列的Q因子。通过相邻的晶胞之间磁偶极子的相互作用定性地表示增强。

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