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Multipole Resonance in Arrays of Diamond Dielectric: A Metamaterial Perfect Absorber in the Visible Regime

机译:金刚石介电体阵列中的多极共振:可见状态下的超材料完美吸收体

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摘要

Excellent characteristics and promising application prospects promote the rapid development of metamaterials. We have numerically proposed and demonstrated a novel subwavelength broadband metamaterial perfect absorber (BMPA) based on diamond dielectric arrays. The proposed absorber is composed of an ultra-thin two-layer structure covering the dielectric periodic array on a metal substrate. The materials of dielectric silicon (Si) and gold (Au) substrate are discussed in detail. In addition, different dielectric and refractory materials are also applied to achieve broadband absorption, which will make the proposed absorber greatly broaden the application field. A perfect absorption window (i.e., absorption rate exceeding 90%) can be obtained from near-ultraviolet to the visible range. The average absorption rate of 93.3% is achieved in the visible range. The results of multipole decomposition show that broadband absorption is mainly caused by electromagnetic dipole resonance and lattice resonance in a periodic array of Si. The proposed absorber can be extended freely by adjusting the structural parameters. The polarization-independent and incident angle insensitivity are proved. The proposed absorber may well be used in light energy acquisition, as well as for the scalability of optoelectronic and sensing devices.
机译:优异的特性和广阔的应用前景推动了超材料的快速发展。我们已经在数值上提出并证明了一种基于金刚石电介质阵列的新型亚波长宽带超材料完美吸收体(BMPA)。提出的吸收器由覆盖金属衬底上的介电周期阵列的超薄两层结构组成。详细讨论了介电硅(Si)和金(Au)衬底的材料。另外,还采用了不同的介电和耐火材料来实现宽带吸收,这将使所提出的吸收器大大拓宽应用领域。从近紫外光到可见光范围,可以获得理想的吸收窗口(即吸收率超过90%)。在可见光范围内,平均吸收率为93.3%。多极分解的结果表明,宽带吸收主要是由硅的周期性阵列中的电磁偶极共振和晶格共振引起的。所提出的吸收器可以通过调节结构参数自由地扩展。证明了偏振无关和入射角不敏感。所提出的吸收器可以很好地用于光能获取,以及用于光电和传感设备的可扩展性。

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