论文标题

通过手性跨表面的圆极化灯的解耦相调制

Decoupled phase modulation for circularly polarized lights via chiral metasurface

论文作者

Jin, Renchao, Deng, Lin, Tang, Lili, Cao, Yue, Liu, Yongmin, Dong, Zheng-Gao

论文摘要

元时间被认为是纳米光学设备中最好的候选者之一,归因于相位设计的关键可行调制特征,并通过结构设计来增强局部场地。但是,当前的传播和几何相模调子的当前方法在两个特征旋转状态之间相互关联。这意味着,当梁的左手组件阶段由元额叶调制时,其右手组件阶段将相应地变化,这限制了自旋 - 耦合应用程序的多功能性。在本文中,我们在实验和数值上证明了基于手性V形孔的新相位调制途径,这可以使两个特征旋转状态的完全脱钩的单手相调制。提议两个对映异构体实现两个过滤园的解耦函数,例如,对映体可以操纵激光束的左手组件相,而不会改变右手的组件。该提出的方法在元整日中具有重要的含义,可以扩展相位工程的方法。

Metasurfaces are believed as one of the best candidates in nano-optical devices, attributed to the key feasible modulation features of phase, polarization, and local field enhancement by structural designing. However, current methods of propagation- and geometric-phase modulation are interrelated between two eigen spin-states. This means that when the left-handed component phase of a beam is modulated by metasurfaces, its right-handed component phase will change accordingly, which limits the versatility of spin-decoupled applications. In this paper, we experimentally and numerically demonstrate a new phase modulation pathway based on chiral V-shaped holes, which enable fully decoupled one-handed phase modulation of the two eigen spin-states. Two enantiomers are proposed to realize decoupled functions for the two eign-states, e.g., the enantiomer can manipulate the left-handed component phase of a laser beam without changes of the right-handed component. This proposed method has significant meaning in metasurfaces, which can expand the methods of phase engineering.

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