论文标题

用于集成光子学的波漏元额

Leaky-wave metasurfaces for integrated photonics

论文作者

Huang, Heqing, Overvig, Adam C., Xu, Yuan, Malek, Stephanie C., Tsai, Cheng-Chia, Alù, Andrea, Yu, Nanfang

论文摘要

在紧凑,轻量级设备中,Metasurfaces一直在迅速推进我们的指挥。但是,到目前为止,它们主要仅限于在自由空间中操纵光线。光栅耦合器提供了桥接远场光辐射和平面引导波的机会,因此已成为光子整合电路中的基本构建块。但是,它们的运行和光控制程度比Metasurfaces更具限制。已经探索了集成在引导波光子系统之上的元时间,以控制光线外片的散射,具有增强的功能 - 即逐点操纵振幅,相位或极化。但是,到目前为止,这些努力最多只能控制一个或两个光学的自由度,而与传统的光栅耦合器相比,设备配置要复杂得多。在这里,我们介绍了泄漏的波元面积,这些元整口基于对称性的光子晶体平板,该平板支持连续体中的准结合状态。该平台具有相当于常规光栅耦合器的紧凑型外形,但是它在大型孔径上提供了完整的命令,可以超过幅度,相位和极化(四个光学自由度)。我们介绍了基于泄漏的波元面积在1.55微米附近的波长处运行的各种功能的实验证明,包括固定极化状态下的相位和振幅控制设备,以及控制所有四个光学自由度的设备。我们的结果融合了在元信息的保护下的指导和自由空间光学的领域,利用了连续体中准结合状态的混合性质,从而有机会以颠覆性的方式成像,沟通,增强现实,量子的现实,量子光学,LIDAR,LIDAR和集成光电系统的发展。

Metasurfaces have been rapidly advancing our command over the many degrees of freedom of light within compact, lightweight devices. However, so far, they have mostly been limited to manipulating light in free space. Grating couplers provide the opportunity of bridging far-field optical radiation and in-plane guided waves, and thus have become fundamental building blocks in photonic integrated circuits. However, their operation and degree of light control is much more limited than metasurfaces. Metasurfaces integrated on top of guided wave photonic systems have been explored to control the scattering of light off-chip with enhanced functionalities - namely, point-by-point manipulation of amplitude, phase or polarization. However, these efforts have so far been limited to controlling one or two optical degrees of freedom at best, and to device configurations much more complex compared to conventional grating couplers. Here, we introduce leaky-wave metasurfaces, which are based on symmetry-broken photonic crystal slabs that support quasi-bound states in the continuum. This platform has a compact form factor equivalent to the one of conventional grating couplers, but it provides full command over amplitude, phase and polarization (four optical degrees of freedom) across large apertures. We present experimental demonstrations of various functionalities for operation at wavelengths near 1.55 microns based on leaky-wave metasurfaces, including devices for phase and amplitude control at a fixed polarization state, and devices controlling all four optical degrees of freedom. Our results merge the fields of guided and free-space optics under the umbrella of metasurfaces, exploiting the hybrid nature of quasi-bound states in the continuum, for opportunities to advance in disruptive ways imaging, communications, augmented reality, quantum optics, LIDAR and integrated photonic systems.

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