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Dual-narrow-band and record-broad-band plasmonic absorbers

机译:双窄带和记录宽带等离子体吸收器

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A novel design of double resonant plasmonic nanoantennas is proposed. Numerical simulations using finite-difference time-domain method show that the designed asymmetric H-shaped bowtie antenna can provide double resonances with a common electromagnetic hot spot in the antenna gap. These resonant modes are due to the plasmon hybridization in the asymmetric structure. In addition, a dual-narrow-band perfect absorber is achieved, consisting of the asymmetric structure positioned at a well-specified distance above a metal plane with a silica spacer layer. A broadband plasmonic absorber covering from 300nm to 22 μm with over 95% absorption is also reported.
机译:提出了一种双共振等离子体纳米天线的新颖设计。使用时域有限差分法进行的数值模拟表明,所设计的非对称H形领结天线可以在天线间隙中存在共同的电磁热点的情况下提供双谐振。这些共振模式归因于不对称结构中的等离子体激元杂交。另外,实现了双窄带完美吸收体,该吸收体由不对称结构组成,该不对称结构位于具有二氧化硅间隔层的金属平面上方指定的距离处。还报道了覆盖范围从300nm到22μm,吸收率超过95%的宽带等离子体吸收器。

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