论文标题

电介质跨面的有效非线性波前形状

Efficient nonlinear wavefront shaping by dielectric metasurfaces

论文作者

Hähnel, David, Förstner, Jens, Myroshnychenko, Viktor

论文摘要

介电元面提供了一个独特的平台,用于在纳米级的有效的谐波产生和光波前操作。使用基于共振的跨额的非线性生成波的裁缝阶段和幅度高发射效率是一项艰巨的任务,通常需要最先进的数值方法。在这里,我们提出了一种简单而有效的方法,该方法将采样方法与蒙特卡洛方法结合在一起,以设计由椭圆形硅纳米虫组成的全dielectric metasurfaces产生的第三谐波前波前。使用这种方法,我们证明了具有均匀且最高幅度的整个非线性$2π$相位控制,从而使我们可以将运行的元空间设计为能够将光转向所需方向具有较高发射效率的第三次谐波梁偏转器。与迄今为止基于硅的元时间的最佳结果相比,在第一个衍射顺序上发出的第三次谐波强度的高扩增可实现高达$ \ sim 500 $。我们预计,所提出的方法将被广泛应用于具有较高复杂性和实施努力的常用优化算法的替代方法,以设计具有其他全息功能的元时间。

Dielectric metasurfaces provide a unique platform for efficient harmonic generation and optical wavefront manipulation at the nanoscale. Tailoring phase and amplitude of a nonlinearly generated wave with a high emission efficiency using resonance-based metasurfaces is a challenging task which often requires state-of-the-art numerical methods. Here, we propose a simple yet effective approach combining a sampling method with a Monte Carlo approach to design the third-harmonic wavefront generated by all-dielectric metasurfaces composed of elliptical silicon nanodisks. Using this approach, we demonstrate the full nonlinear $2π$ phase control with a uniform and highest possible amplitude allowing us to design metasurfaces operating as third harmonic beam deflectors capable of steering light into a desired direction with high emission efficiency. The high amplification of the third-harmonic intensity emitted at the first diffraction order by a factor up to $\sim 500$ is achieved as compared to the best results reported for silicon-based metasurfaces so far. We anticipate that the proposed approach will be widely applied as alternative to commonly used optimization algorithms with higher complexity and implementation effort for the design of metasurfaces with other holographic functionalities.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源