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Perfect Dual-Band Absorber Based on Plasmonic Effect with the Cross-Hair/Nanorod Combination

机译:基于等离子和交叉毛发/纳米棒组合的完美双频吸收器

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摘要

Plasmonic effect using a cross-hair can convey strongly localized surface plasmon modes among the separated composite nanostructures. Compared to its counterpart without the cross-hair, this characteristic has the remarkable merit of enhancing absorptance at resonance and can make the structure carry out a dual-band plasmonic perfect absorber (PPA). In this paper, we propose and design a novel dual-band PPA with a gathering of four metal-shell nanorods using a cross-hair operating at visible and near-infrared regions. Two absorptance peaks at 1050 nm and 750 nm with maximal absorptance of 99.59% and 99.89% for modes 1 and 2, respectively, are detected. High sensitivity of 1200 nm refractive unit (1/RIU), figure of merit of 26.67 and Q factor of 23.33 are acquired, which are very remarkable compared with the other PPAs. In addition, the absorptance in mode 1 is about nine times compared to its counterpart without the cross-hair. The proposed structure gives a novel inspiration for the design of a tunable dual-band PPA, which can be exploited for plasmonic sensor and other nanophotonic devices.
机译:使用十字准线的等离子效应可以在分离的复合纳米结构之间传递强烈的局部表面等离振子模式。与没有十字准线的对应物相比,该特性具有增强共振吸收率的显着优点,并且可以使该结构实现双频等离子体完美吸收体(PPA)。在本文中,我们提出并设计了一种新颖的双波段PPA,它使用在可见光和近红外区域工作的十字准线聚集了四个金属壳纳米棒。在模式1和模式2下,分别在1050 nm和750 nm处检测到两个吸收率峰,最大吸收率分别为99.59%和99.89%。获得了1200 nm屈光度单位(1 / RIU)的高灵敏度,26.67的品质因数和23.33的Q因子,与其他PPA相比非常出色。此外,模式1的吸收率约为没有十字线的吸收率的9倍。所提出的结构为可调谐双频带PPA的设计提供了新颖的灵感,可将其用于等离子体传感器和其他纳米光子器件。

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