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纳米尺度下基于非线性干涉测量的全光偏振编码与调制。

All-optical polarization encoding and modulation by nonlinear interferometry at the nanoscale.

作者信息

Luan Yigong, Zilli Attilio, Di Francescantonio Agostino, Vinel Vincent, Biagioni Paolo, Duò Lamberto, Lemaître Aristide, Leo Giuseppe, Celebrano Michele, Finazzi Marco

机构信息

Department of Physics, Politecnico di Milano, 20133, Milan, Italy.

Université de Paris, CNRS, Laboratoire Matériaux et Phénomènes Quantiques, 75013, Paris, France.

出版信息

Light Sci Appl. 2025 Sep 15;14(1):318. doi: 10.1038/s41377-025-01948-1.

Abstract

Optical metasurfaces allow complex light manipulation within subwavelength thicknesses and are thus rapidly emerging as a key enabling technology for nanophotonics applications. The control over light polarization already provided a route towards ultracompact metasurface-based polarimetry devices. If translated to the nonlinear optical regime it may become a transformative tool for nonlinear imaging, optical holography, and sensing. Here, we report ultrafast all-optical polarization modulation of upconverted light by all-dielectric metasurfaces via nonlinear interferometry. By controlling the relative phase between a pump beam at ω and its frequency-doubled replica at 2ω, we can set the phase relation between two frequency-degenerate upconversion processes at 3ω - sum-frequency generation and third-harmonic generation - stemming from an AlGaAs metasurface. By leveraging the opposite parity of the two nonlinear processes and adjusting their relative intensities, we achieve a modulation of the polarization state of the upconverted light between linear and circular states with a circular polarization degree of up to 83%. Remarkably, circularly polarized light of opposite handedness is symmetrically mapped in the Fourier space, at coincidence with the first diffraction orders of the metasurface. Furthermore, the handedness can be completely reversed within the same diffraction order by applying a phase delay of π. Our work adds an additional modulation layer beyond intensity to all-optical routing with precise phase control: polarization. The capability to encode and modulate simultaneously different polarization states in the k-space holds potential for chiral sensing and advanced imaging techniques.

摘要

光学超表面能够在亚波长厚度内实现复杂的光操控,因此正迅速成为纳米光子学应用的一项关键 enabling 技术。对光偏振的控制已经为基于超表面的超紧凑型偏振测量设备提供了一条途径。如果推广到非线性光学领域,它可能会成为非线性成像、光学全息和传感的变革性工具。在此,我们报道了全介质超表面通过非线性干涉对倍频光进行的超快全光偏振调制。通过控制频率为 ω 的泵浦光束与其频率翻倍的 2ω 复制光束之间的相对相位,我们可以设定源于 AlGaAs 超表面的两个频率简并的倍频过程(和频产生与三次谐波产生)在 3ω 处的相位关系。通过利用这两个非线性过程的相反宇称并调整它们的相对强度,我们实现了倍频光偏振态在线性和圆偏振态之间的调制,圆偏振度高达 83%。值得注意的是,相反旋向的圆偏振光在傅里叶空间中对称映射,与超表面的一阶衍射级次重合。此外,通过施加 π 的相位延迟,可以在同一衍射级次内完全反转旋向。我们的工作为具有精确相位控制的全光路由增加了强度之外的额外调制层:偏振。在 k 空间中同时编码和调制不同偏振态的能力在手性传感和先进成像技术方面具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da78/12434142/41af2c369386/41377_2025_1948_Fig1_HTML.jpg

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