论文标题

设计师Bloch等离子体极化元素分散在双曲线元损伤中

Designer Bloch Plasmon Polariton Dispersion in Hyperbolic Meta-Gratings

论文作者

Maccaferri, Nicolò, Isoniemi, Tommi, Hinczewski, Michael, Iarossi, Marzia, Strangi, Giuseppe, De Angelis, Francesco

论文摘要

双曲线超材料(HMM)代表了一类新型引人入胜的各向异性等离子材料,除了表面等离子体的偏振子外,还支持高度狭窄的传播等离子体极化子。但是,由于工程非传统光学特性带有人工纳米结构的内在困难以及高折射性索引棱镜与入射光和指导模式之间匹配的高度远程索引棱镜,因此通过棱镜耦合来量身定制和激发这些模式非常具有挑战性。在这里,我们使用元晶状体报告了具有超大模态体积的高K Bloch样等离子体极化(BPPS)模式的激发机理,该模式是金属衍射光栅和II型HMM的组合结构。我们展示了在红外光谱范围内没有任何模式的一维等离子光栅,如果耦合到支撑高K模式的HMM,可以通过耦合到远场辐射有效地激发这些模式。我们的理论预测通过反射测量作为入射角和激发波长的函数证实。我们介绍了设计原则,以完全控制元元素中的高K模式,从而可以更好地理解这种混合元结构中的光结合相互作用。提出的光谱响应工程有望在生物化学传感器,集成光学和光学次波长成像中找到潜在的应用。

Hyperbolic metamaterials (HMMs) represent a novel class of fascinating anisotropic plasmonic materials, supporting highly confined propagating plasmon polaritons in addition to surface plasmon polaritons. However, it is very challenging to tailor and excite these modes at optical frequencies by prism coupling because of the intrinsic difficulties in engineering non-traditional optical properties with artificial nanostructures and the unavailability of high refractive index prisms for matching the momentum between the incident light and the guided modes. Here, we report the mechanism of excitation of high-k Bloch-like Plasmon Polariton (BPPs) modes with ultrasmall modal volume using a meta-grating, which is a combined structure of a metallic diffraction grating and a type II HMM. We show how a 1D plasmonic grating without any mode in the infrared spectral range, if coupled to a HMM supporting high-k modes, can efficiently enable the excitation of these modes via coupling to far-field radiation. Our theoretical predictions are confirmed by reflection measurements as a function of angle of incidence and excitation wavelength. We introduce design principles to achieve a full control of high-k modes in meta-gratings, thus enabling a better understanding of light-matter interaction in this type of hybrid meta-structures. The proposed spectral response engineering is expected to find potential applications in bio-chemical sensors, integrated optics and optical sub-wavelength imaging.

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