Terekhov P D, Shamkhi H K, Gurvitz E A, Baryshnikova K V, Evlyukhin A B, Shalin A S, Karabchevsky A
Opt Express. 2019 Apr 15;27(8):10924-10935. doi: 10.1364/OE.27.010924.
Dielectric photonics platform provides unique possibilities to control light scattering via utilizing high-index dielectric nanoantennas with peculiar optical signatures. Despite the intensively growing field of all-dielectric nanophotonics, it is still unclear how surrounding media affect scattering properties of a nanoantenna with complex multipole response. Here, we report on light scattering by a silicon cubic nanoparticle embedded in lossless media, supporting optical resonant response. We show that significant changes in the scattering process are governed by the electro-magnetic multipole resonances, which experience spectral red-shift and broadening over the whole visible and near-infrared spectra as the indices of media increase. Most interestingly, the considered nanoantenna exhibits the broadband forward scattering in the visible and near-infrared spectral ranges due to the Kerker-effect in high-index media. The revealed effect of broadband forward scattering is essential for highly demanding applications in which the influence of the media is crucial such as health-care, e.g., sensing, treatment efficiency monitoring, and diagnostics. In addition, the insights from this study are expected to pave the way toward engineering the nanophotonic systems including but not limited to Huygens-metasurfaces in media within a single framework.
介电光子学平台通过利用具有独特光学特征的高折射率介电纳米天线,为控制光散射提供了独特的可能性。尽管全介电纳米光子学领域发展迅速,但尚不清楚周围介质如何影响具有复杂多极响应的纳米天线的散射特性。在此,我们报道了嵌入无损介质中的硅立方纳米颗粒的光散射,该介质支持光学共振响应。我们表明,散射过程中的显著变化由电磁多极共振控制,随着介质折射率的增加,这些共振在整个可见光和近红外光谱范围内经历光谱红移和展宽。最有趣的是,由于高折射率介质中的克尔效应,所考虑的纳米天线在可见光和近红外光谱范围内呈现宽带前向散射。所揭示的宽带前向散射效应对于医疗保健等对介质影响至关重要的高要求应用(例如传感、治疗效率监测和诊断)至关重要。此外,预计本研究的见解将为在单一框架内设计包括但不限于介质中的惠更斯超表面的纳米光子系统铺平道路。