Ayas Sencer, Bakan Gokhan, Dana Aykutlu
Opt Express. 2015 May 4;23(9):11763-70. doi: 10.1364/OE.23.011763.
Multispectral metamaterial absorbers based on metal-insulator-metal nano-square patch resonators are studied here. For a geometry consisting of perfectly nano-square patches and vertical sidewalls, double resonances in the visible regime are observed due to simultaneous excitation of electric and magnetic plasmon modes. Although slightly modifying the sizes of the square patches makes the resonance wavelengths simply shift, rounding corners of the square patches results in emergence of a third resonance due to excitation of the circular cavity modes. Sidewall angle of the patches are also observed to affect the absorption spectra significantly. Peak absorption values for the triple resonance structures are strongly affected as the sidewall angle varies from 90 to 50 degrees. Rounded corners and slanted sidewalls are typical imperfections for lithographically fabricated metamaterial structures. The presented results suggest that imperfections caused during fabrication of the top nano-structures must be taken into account when designing metamaterial absorbers. Furthermore, it is shown that these fabrication imperfections can be exploited for improving resonance properties and bandwidths of metamaterials for various potential applications such as solar energy harvesting, thermal emitters, surface enhanced spectroscopies and photodetection.
本文研究了基于金属-绝缘体-金属纳米方形贴片谐振器的多光谱超材料吸收体。对于由完美纳米方形贴片和垂直侧壁组成的几何结构,由于电等离子体模式和磁等离子体模式的同时激发,在可见光范围内观察到了双共振。虽然略微改变方形贴片的尺寸只会使共振波长简单地移动,但将方形贴片的角倒圆会由于圆形腔模式的激发而产生第三种共振。还观察到贴片的侧壁角度会显著影响吸收光谱。当侧壁角度从90度变化到50度时,三重共振结构的峰值吸收值会受到强烈影响。圆角和倾斜的侧壁是光刻制造的超材料结构的典型缺陷。给出的结果表明,在设计超材料吸收体时,必须考虑顶部纳米结构制造过程中产生的缺陷。此外,研究表明,这些制造缺陷可用于改善超材料的共振特性和带宽,以用于各种潜在应用,如太阳能收集、热发射体、表面增强光谱学和光电探测。