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Anomalous light transport induced by deeply subwavelength quasiperiodicity in multilayered dielectric metamaterials

机译:多层电介质超材料中深度亚波长QuaSipicity引起的异常光传输

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For dielectric multilayered metamaterials, the effective-parameter representation is known to be insensitive to geometrical features occurring at deeply subwavelength scales. However, recent studies on periodic and aperiodically ordered geometries have shown the existence of certain critical parameter regimes where this conventional wisdom is upended, as the optical response of finite-size samples may depart considerably from the predictions of standard effective-medium theory. In these regimes, characterized by a mixed evanescent/propagating light transport, different classes of spatial (dis)order have been shown to induce distinctive effects in the optical response, in terms of anomalous transmission, localization, enhancement, absorption, and lasing. Here we further expand these examples by considering a quasiperiodic scenario based on a modified-Fibonacci geometry. Among the intriguing features of this model there is the presence of a scale parameter that controls the transition from perfectly periodic to quasiperiodic scenarios of different shades. Via an extensive parametric study, this allows us to identify the quasiperiodicity-induced anomalous effects, and to elucidate certain distinctive mechanisms and footprints. Our results hold potentially interesting implications for the optical probing of structural features at a resolution much smaller than the wavelength, and could also be leveraged to design novel types of absorbers and low-threshold lasers.
机译:对于介电多层超材料,已知有效参数表示对在深度亚波长尺度处发生的几何特征不敏感。然而,最近关于周期性和非周期性有序的几何形状的研究表明存在某些常规智慧的关键参数制度的存在,因为有限尺寸样本的光学响应可能远离标准有效介质理论的预测。在这些制度中,特征在于混合的渐逝/传播光传输,已经显示出不同类别的空间(DIS)顺序在异常传输,定位,增强,吸收和激光方面,在光学响应中诱导不同的效果。在这里,我们通过考虑基于修改的斐波纳契几何体的QuaSiperiodic场景,进一步扩展这些示例。在该模型的有趣特征中,存在缩放参数,该参数控制从完全周期性的转换到不同阴影的QuaSiodic场景。通过广泛的参数研究,这使我们能够识别QuaSipIodicity诱导的异常效果,并阐明某些独特的机制和占地面积。我们的结果对光学探测结构特征的光学探测远大于波长的分辨率具有潜在的有趣影响,并且也可以利用设计新型的吸收器和低阈值激光器。

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