Ji Ruonan, Song Kun, Guo Xuyue, Xie Xin, Zhao Yang, Jin Chuan, Wang Shaowei, Jiang Chengming, Yin Jianbo, Liu Yahong, Zhai Shilong, Zhao Xiaopeng, Lu Wei
Opt Express. 2021 Aug 2;29(16):25720-25730. doi: 10.1364/OE.431740.
In this paper, a strategy to achieve a simultaneous wavefront shaping and polarization rotation, without compromising the number of pixels and energy efficiency as well as having broadband operation range, is proposed. This strategy is based on the application of a spin-decoupled phase metasurface composed by only one set of metal-insulator-metal (MIM) umbrella-shaped chiral unit cells. Quasi-non-dispersive and spin-decoupled phase shift can be achieved simply by changing single structural parameter of the structure. By further merging the Pancharatnam-Berry (PB) geometric phase, conversion of an incident LP light beam into right- and left-handed circularly polarized reflected beams with similar amplitudes, desired phase profiles and controlled phase retardation on a nanoscale is enabled with high efficiency. Based on the proposed strategy, a polarization-insensitive hologram generator with control optical activity, and a multiple ring vortex beam generator are realized. The results obtained in this work provide a simple and pixel-saving approach to the design of integratable and multitasking devices combining polarization manipulation and wavefront shaping functions, such as vectorial holographic generators, multifocal metalenses, and multichannel vector beam generators.
本文提出了一种在不影响像素数量和能量效率以及具有宽带工作范围的情况下实现同时波前整形和偏振旋转的策略。该策略基于仅由一组金属-绝缘体-金属(MIM)伞形手性单元组成的自旋解耦相位超表面的应用。通过改变结构的单个结构参数,可以简单地实现准非色散和自旋解耦相移。通过进一步合并潘查拉特纳姆-贝里(PB)几何相位,能够在纳米尺度上高效地将入射的线偏振光束转换为具有相似幅度、所需相位分布和可控相位延迟的右旋和左旋圆偏振反射光束。基于所提出的策略,实现了具有可控光学活性的偏振不敏感全息图发生器和多环涡旋光束发生器。这项工作所获得的结果为设计结合偏振操纵和波前整形功能的可集成多任务设备提供了一种简单且节省像素的方法,例如矢量全息图发生器、多焦点金属透镜和多通道矢量光束发生器。