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利用片上亚波长全息表面光栅对相结构光束进行多功能生成与操控。

Versatile generation and manipulation of phase-structured light beams using on-chip subwavelength holographic surface gratings.

作者信息

Zheng Shuang, Zhao Zhenyu, Zhang Weifeng

机构信息

Radar Research Lab, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, China.

Key Laboratory of Electronic and Information Technology in Satellite Navigation (Beijing Institute of Technology), Ministry of Education, Beijing 100081, China.

出版信息

Nanophotonics. 2023 Jan 3;12(1):55-70. doi: 10.1515/nanoph-2022-0513. eCollection 2023 Jan.

Abstract

Phase-structured light beams carrying orbital angular momentum (OAM) have a wide range of applications ranging from particle trapping to optical communication. Many techniques exist to generate and manipulate such beams but most suffer from bulky configurations. In contrast, silicon photonics enables the integration of various functional components on a monolithic platform, providing a way to miniaturize optical systems to chip level. Here, we propose a series of on-chip subwavelength holographic waveguide structures that can convert the in-plane guided modes into desired wavefronts and realize complex free-space functions, including the generation of complex phase-structured light beams, arbitrarily directed vortex beam emission and vortex beam focusing. We use a holographic approach to design subwavelength holographic surface gratings, and demonstrate broadband generation of Laguerre-Gaussian (LG) and linearly polarized (LP) modes. Moreover, by assigning appropriate geometric phase profiles to the spiral phase distribution, the off-chip vortex beam manipulation including arbitrarily directed emission and beam focusing scenarios can be realized. In the experiment, directed vortex beam emission is realized by using a fabricated tilt subwavelength holographic fork grating. The proposed waveguide structures enrich the functionalities of dielectric meta-waveguide structures, which can find potential applications in optical communication, optical trapping, nonlinear interaction and imaging.

摘要

携带轨道角动量(OAM)的相位结构光束具有广泛的应用,从粒子捕获到光通信。存在许多产生和操纵此类光束的技术,但大多数都存在结构庞大的问题。相比之下,硅光子学能够在单片平台上集成各种功能组件,为将光学系统小型化到芯片级别提供了一种方法。在此,我们提出了一系列片上亚波长全息波导结构,这些结构可以将面内导模转换为所需的波前,并实现复杂的自由空间功能,包括产生复杂的相位结构光束、任意方向的涡旋光束发射和涡旋光束聚焦。我们使用全息方法设计亚波长全息表面光栅,并展示了拉盖尔 - 高斯(LG)模和线偏振(LP)模的宽带产生。此外,通过为螺旋相位分布赋予适当的几何相位分布,可以实现片外涡旋光束操纵,包括任意方向的发射和光束聚焦场景。在实验中,通过使用制造的倾斜亚波长全息叉形光栅实现了定向涡旋光束发射。所提出的波导结构丰富了介电超波导结构的功能,在光通信、光捕获、非线性相互作用和成像等方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14aa/11501405/9b3577a81993/j_nanoph-2022-0513_fig_001.jpg

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