Unravelling the nonlinear generation of designer vortices with dielectric metasurfaces

IF 20.6 Q1 OPTICS
Laure Coudrat, Guillaume Boulliard, Jean-Michel Gérard, Aristide Lemaître, Aloyse Degiron, Giuseppe Leo
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Abstract

Vortex beams are currently drawing a great deal of interest, from fundamental research to several promising applications. While their generation in bulky optical devices limits their use in integrated complex systems, metasurfaces have recently proven successful in creating optical vortices, especially in the linear regime. In the nonlinear domain, of strategic importance for the future of classical and quantum information, to date orbital angular momentum has only been created in qualitative ways, without discussing discrepancies between design and experimental results. Here, we demonstrate and analyze the generation of high-purity second harmonic (SH) optical vortices via dielectric meta-holograms. Through full-wave simulations and a proper fabrication protocol, we achieve efficient frequency doubling of an unstructured pump beam into SH vortices with topological charges from 1 to 10. Interferometric and modal-purity measurements confirm the generation of high-quality SH vortices with minimal deviations from the intended design thanks to a quasi-local control over the SH phase. Through systematic comparisons between experimental data and semi-analytical calculations, we also provide a clear insight into the occurrence of ghost vortices in the metasurface-generated harmonic beams, highlighting the importance of simple designs that can be readily transposed into fabricated devices with high fidelity. Our findings underscore the potential of nonlinear dielectric metasurfaces for versatile structured-light generation and manipulation, paving the way for future developments in integrated photonic systems.

Abstract Image

解译介电超表面设计涡的非线性生成
涡旋光束目前引起了人们的极大兴趣,从基础研究到一些有前途的应用。虽然它们在大型光学器件中的产生限制了它们在集成复杂系统中的应用,但最近证明,超表面在创造光学涡流方面取得了成功,特别是在线性体系中。在非线性领域,对经典和量子信息的未来具有战略意义,迄今为止,轨道角动量仅以定性的方式创建,而没有讨论设计和实验结果之间的差异。在这里,我们演示和分析了通过介电元全息图产生高纯度二次谐波(SH)光学涡流。通过全波模拟和适当的制造方案,我们实现了非结构化泵浦光束进入拓扑电荷从1到10的SH漩涡的有效倍频。干涉测量和模态纯度测量证实,由于对SH相位的准局部控制,高质量SH涡的产生与预期设计的偏差最小。通过对实验数据和半解析计算的系统比较,我们也对超表面产生的谐波光束中幽灵漩涡的发生提供了清晰的见解,强调了简单设计的重要性,这些设计可以很容易地转换成高保真度的制造设备。我们的发现强调了非线性介电超表面在多功能结构光产生和操纵方面的潜力,为集成光子系统的未来发展铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
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803
审稿时长
2.1 months
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