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通过铌酸锂晶体中的叉形光栅阵列高效生成倍频分离的轨道角动量光束。

Efficient generation of octave-separating orbital angular momentum beams via forked grating array in lithium niobite crystal.

作者信息

Liu Xinyu, Wei Dan, Chang Chun, Liu Dingwei, Li Juntao, Wei Dunzhao

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, School of Physics, Sun Yat-Sen University, Guangzhou 510275, China.

School of Electronic Engineering & Intelligentization, Dongguan University of Technology, Dongguan 523808 Guangdong, China.

出版信息

Nanophotonics. 2024 Aug 1;13(18):3465-3476. doi: 10.1515/nanoph-2024-0174. eCollection 2024 Aug.

Abstract

The concept of orbital angular momentum (OAM) of light has not only advanced fundamental physics research but also yielded a plethora of practical applications, benefitting from the abundant methods for OAM generation based on linear, nonlinear and combined schemes. The combined scheme could generate octave-separating OAM beams, potentially increasing the channels for optical communication and data storage. However, this scheme faces a challenge in achieving high conversion efficiency. In this work, we have demonstrated the generation of multiple OAM beams at both fundamental frequency and second harmonic (SH) wavelengths using a three-dimensional forked grating array with both spatial and distributions in a lithium niobate nonlinear photonic crystal platform. The enhancements of the fundamental and SH OAM beams have been achieved by employing linear Bragg diffraction and nonlinear Bragg diffraction, respectively, i.e., quasi-phase matching. The experimental results show that OAM beams with variable topological charges can be enhanced at different diffraction orders via wavelength or angle tuning, achieving conversion efficiencies of 60.45 % for the linear OAM beams and 1.08 × 10 W for the nonlinear ones. This work provides a promising approach for parallel detection of OAM states in optical communications, and extends beyond OAM towards the control of structured light via cascaded linear and nonlinear processes.

摘要

光的轨道角动量(OAM)概念不仅推动了基础物理研究,还带来了大量实际应用,这得益于基于线性、非线性和组合方案的丰富OAM产生方法。组合方案能够产生倍频程分离的OAM光束,有望增加光通信和数据存储的信道。然而,该方案在实现高转换效率方面面临挑战。在这项工作中,我们展示了在铌酸锂非线性光子晶体平台上,利用具有空间和分布的三维叉形光栅阵列,在基频和二次谐波(SH)波长处产生多个OAM光束。基频和SH OAM光束的增强分别通过线性布拉格衍射和非线性布拉格衍射实现,即准相位匹配。实验结果表明,通过波长或角度调谐,可以在不同衍射级次增强具有可变拓扑电荷的OAM光束,线性OAM光束的转换效率达到60.45%,非线性OAM光束的转换效率达到1.08×10W。这项工作为光通信中OAM态的并行检测提供了一种有前景的方法,并通过级联线性和非线性过程,从OAM扩展到对结构化光的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d0/11501519/a3b528aa8cbe/j_nanoph-2024-0174_fig_001.jpg

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