论文标题
超平面内双曲线设计器polaritons的负折射
Negative refraction of ultra-squeezed in-plane hyperbolic designer polaritons
论文作者
论文摘要
高光(即高K)光子模式的平面内负折射可以实现许多应用,例如在深层波长尺度下的平面平台中的成像和超升压。但是,到目前为止,它在实验中的实际实施仍然难以捉摸。在这里,我们提出了一类双曲线跨面,其特征是各向异性磁性电片电导率,并可以支持平面内超高K磁性设计器极化器。基于此类元信息,我们报告了在极深的波长尺度下设计器极性子的全角负折射的第一个实验性观察。此外,我们直接用双曲线分散剂可视化设计师极化子。重要的是,对于这些双曲线极性子,我们发现它们的挤压因子是超大的,并且是特定的,在实验中,它的挤压因子最高可达129个,其创纪录的值超过了自然肥大材料中的值。目前的实现负折射的方案也适用于其他天然材料,并可能在纳米光子学中引人入胜。此外,所提出的跨空面在空间和频率上很容易量身定制,可以用作探索双曲线极性子的极高约束和异常传播的多功能平台。
The in-plane negative refraction of high-momentum (i.e., high-k) photonic modes could enable many applications such as imaging and hyperlensing in a planar platform at deep-subwavelength scales. However, its practical implementation in experiments remains elusive so far. Here we propose a class of hyperbolic metasurfaces, which is characterized by an anisotropic magnetic sheet conductivity and can support the in-plane ultrahigh-k magnetic designer polaritons. Based on such metasurfaces, we report the first experimental observation of the all-angle negative refraction of designer polaritons at extremely deep-subwavelength scales. Moreover, we directly visualize the designer polaritons with hyperbolic dispersions. Importantly, for these hyperbolic polaritons, we find that their squeezing factor is ultra-large and, to be specific, it can be up to 129 in the experiments, a record-breaking value exceeding those in naturally hyperbolic materials. The present scheme for the achievement of negative refraction is also applicable to other natural materials and may enable intriguing applications in nanophotonics. Besides, the proposed metasurfaces are readily tailorable in space and frequency, which could serve as a versatile platform to explore the extremely high confinement and unusual propagation of hyperbolic polaritons.