论文标题
从Janus电介质微型BAR剪裁“光子钩”
Tailoring "photonic hook" from Janus dielectric microbar
论文作者
论文摘要
最近报道了一种新型的弯曲亚波长光束,即光波钩(pH),该光光束(pH)是由于在中尺度介电对象上的衍射而出现的,内部对称性损坏(Janus粒子)。为了有效,技术上更简单的PHS,我们提出了一种新型的不对称Janus微粒,即由具有不同折射率的材料组成的正交微粒子。基于通过有限元方法的数值模拟,我们通过分析该颗粒附近的场强度分布和能量通量来研究pH形成的物理机理。还首次研究了介电底物的影响。我们表明,通过更改Janus Bar的两个部分之间的折射率对比度,可以有效地控制pHS的形状和曲率。也引入和讨论了表征光子钩曲率的复合物的pH质量标准。
A new type of curved subwavelength light beam, a photonic hook (PH), emerged from the diffraction of a light wave at a mesoscale dielectric object with broken internal symmetry (Janus particle) was recently reported. For efficient and technically simpler generation of PHs, we propose a new type of asymmetric Janus microparticles, the orthogonal microbars, composed from materials with different refractive indices. Based on the numerical simulations by means of the Finite Elements Method, we investigate the physical mechanism of PH formation by analyzing the field intensity distribution and the energy fluxes near such particles. The influence of dielectric substrate is also studied for the first time. We show that by changing the refractive index contrast between two parts of Janus bar the shape and curvature of the PHs can be efficiently controlled. The criteria of PH quality for complex characterizing the photonic hook curvature is introduced and discussed as well.