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A Zero-Rank, Maximum Nullity Perfect Electromagnetic Wave Absorber

机译:零位,最大零位完美电磁波吸收器

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Electromagnetic wave absorbers formed from a metamaterial layer are demonstrated and near-perfect absorption is realized across much of the spectrum. Alternatively, an unpatterned low-loss dielectric layer forms an absorber of coherent light and shows near-zero reflectance and high absorption. The latter is termed a coherent perfect absorber (CPA) and may be described as a time-reversed laser. Here, a more fundamental system of dielectric metasurfaces is experimentally demonstrated, which may achieve either coherent or incoherent absorption. The absorber is viewed as two CPAs with eigenmodes of opposite symmetry, and may achieve incoherent absorption with a null scattering matrix, or coherent absorption with a rank-1 scattering matrix. Metasurface absorbers are classified based on their scattering matrix rank and nullity. The demonstrated system and theory establish a path to realize a new class of absorbers useful for future novel applications, including hyperspectral imaging and energy harvesting.
机译:演示了由超材料层形成的电磁波吸收器,并在大部分光谱中实现了近乎完美的吸收。可选地,未构图的低损耗介电层形成相干光的吸收体,并显示出接近零的反射率和高吸收率。后者被称为相干完美吸收体(CPA),可以描述为时间反转激光器。在这里,实验证明了介电超表面的更基本的系统,它可以实现相干吸收或不相干吸收。吸收体被视为具有相反对称本征模式的两个CPA,并且可以通过零位散射矩阵实现非相干吸收,或与1级散射矩阵实现相干吸收。超表面吸收剂根据其散射矩阵等级和无效性进行分类。证明的系统和理论为实现对将来的新型应用(包括高光谱成像和能量收集)有用的新型吸收器提供了一条途径。

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