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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Tunable dual-band liquid crystal based near-infrared perfect metamaterial absorber with high-loss metal
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Tunable dual-band liquid crystal based near-infrared perfect metamaterial absorber with high-loss metal

机译:基于可调谐双频液晶的近红外完美超材料吸收器,具有高损耗金属

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摘要

In this work, a tunable dual-band near-infrared perfect metamaterial absorber formed by combining a highly birefringent nematic liquid crystal with a nanoscale metamaterial cavity arranged in mirror symmetry is designed and numerically investigated. Electromagnetic simulations indicate that the absorbance greater than 99.4% may be achieved at 328 THz and 364 THz. Perfect absorbance results both form the use of highly lossy metal and the optimization of the metamaterial structure. In addition, absorbance of the metamaterial device can be substantially tuned both in terms of its magnitude and wavelength with the spectral tunability up to 8 THz by switching of liquid crystal alignment. The soft-matter-based metamaterial absorbers may pave a crucial role towards various active multifunctional systems working in the near-infrared range.
机译:在这项工作中,通过将具有纳米级超材料腔与布置在镜面对称的纳米级超材料腔组合形成的可调谐双频带近红外完美的超材料吸收器被设计和数值研究。 电磁模拟表明,在328至THz和364星,可以实现大于99.4%的吸光度。 完美的吸光度结果均采用高损耗金属和超材料结构的优化。 另外,通过通过切换液晶对准,可以在其幅度和波长方面基本上和波长基本上调谐超材料装置的吸光度。 基于柔软的页材料吸收剂可以对在近红外范围内工作的各种主动多功能系统铺平至关重要的作用。

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