多功能非厄米超表面:超透镜与全息图。

IF 3.1 2区 物理与天体物理 Q2 OPTICS
Optics letters Pub Date : 2024-12-15 DOI:10.1364/OL.544454
Juan Deng, Yang Geng, Yubao Sun, Yitao Zhang, Fan Gao, Bo Yan
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引用次数: 0

摘要

特殊点(EPs)由于其独特的物理性质而受到广泛关注,并产生了许多相关的应用。然而,到目前为止,大多数与EPs相关的非厄米元表面都集中在实现单一功能上。将多个函数集成到一个非厄米元表面中,同时使其动态可调,这仍然是一个挑战。在这项工作中,我们研究了如何结合Pancharatnam-Berry (PB)相和特殊拓扑(ET)相,并利用EPs的极化去耦特性在二氧化钒(VO2)的辅助下设计和实现了多种功能在超表面上的集成。在实际应用中,通过改变VO2的状态和入射光的偏振,可以实现纯相位超透镜和双通道全息图的切换。这项工作将为多功能非厄米超表面的研究和可切换多功能纳米光子器件的设计开辟新的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multifunctional non-Hermitian metasurface: metalens and holograms.

Exceptional points (EPs) have been the subject of wide concern because of their unique physical properties and have produced many related applications. However, up to now, most non-Hermitian metasurfaces related to EPs focus on realizing a single function. It remains a challenge to integrate multiple functions into a single non-Hermitian metasurface while making it dynamically adjustable. In this work, we investigated how to combine the Pancharatnam-Berry (PB) phase and exceptional topological (ET) phase and used the polarization decoupling property of EPs to design and realize the integration of multiple functions on a metasurface with the assistance of vanadium dioxide (VO2). As an example in applications, the phase-only metalens and dual-channel holograms can be realized and switched by changing states of the VO2 and incident light polarization. This work will open a prospect for researching a multifunctional non-Hermitian metasurface and the design of switchable multifunctional nano-photonic devices.

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来源期刊
Optics letters
Optics letters 物理-光学
CiteScore
6.60
自引率
8.30%
发文量
2275
审稿时长
1.7 months
期刊介绍: The Optical Society (OSA) publishes high-quality, peer-reviewed articles in its portfolio of journals, which serve the full breadth of the optics and photonics community. Optics Letters offers rapid dissemination of new results in all areas of optics with short, original, peer-reviewed communications. Optics Letters covers the latest research in optical science, including optical measurements, optical components and devices, atmospheric optics, biomedical optics, Fourier optics, integrated optics, optical processing, optoelectronics, lasers, nonlinear optics, optical storage and holography, optical coherence, polarization, quantum electronics, ultrafast optical phenomena, photonic crystals, and fiber optics. Criteria used in determining acceptability of contributions include newsworthiness to a substantial part of the optics community and the effect of rapid publication on the research of others. This journal, published twice each month, is where readers look for the latest discoveries in optics.
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