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热原子促进由单个超表面芯片产生的矢量双光束之间的强度削波。

Thermal Atoms Facilitate Intensity Clipping Between Vectorial Dual-Beam Generated by a Single Metasurface Chip.

作者信息

Qing Chen, Cui Jialong, Feng Lishuang, Zhang Dengke

机构信息

School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing, 100191, China.

出版信息

Adv Sci (Weinh). 2025 May;12(17):e2416617. doi: 10.1002/advs.202416617. Epub 2025 Mar 7.

Abstract

Manipulating vector beams is pivotal in fields such as particle manipulation, image processing, and quantum communication. Flexibly adjusting the intensity distribution of these beams is crucial for effectively realizing these applications. This study introduces a vectorial dual-beam system utilizing thermal atoms as the medium for modulating the intensity profile of vector beams. A single metasurface is employed to generate both the control and signal vector beams, each with unique vectorial characteristics. The shaping of the signal beam profile is facilitated by the interaction with thermal atoms, which can be controlled by adjusting the control vector beam. This spatially selective absorption is a result of the thermal atoms' response to the varying polarizations within the vector beams. In this experiment, two distinct metasurface chips are fabricated to generate vector beams with doughnut-shaped and Gaussian-shaped intensity profiles. By adjusting the incident power and polarization state of the control light, the doughnut-shaped signal beams can be converted into a rotational dual-lobed pattern or the dimensions of the Gaussian-distributed signal beams can be modified. This study introduces a novel vector beam shaping technique by integrating metasurfaces with thermal atoms, offering significant promise for future applications requiring miniaturization, dynamic operation, and versatile control capabilities.

摘要

在粒子操控、图像处理和量子通信等领域,操控矢量光束至关重要。灵活调整这些光束的强度分布对于有效实现这些应用至关重要。本研究介绍了一种矢量双光束系统,该系统利用热原子作为调制矢量光束强度分布的介质。采用单个超表面来产生控制矢量光束和信号矢量光束,每个光束都具有独特的矢量特性。信号光束轮廓的整形通过与热原子的相互作用来实现,热原子的相互作用可通过调整控制矢量光束来控制。这种空间选择性吸收是热原子对矢量光束内变化偏振响应的结果。在本实验中,制作了两个不同的超表面芯片,以产生具有甜甜圈形和高斯形强度分布的矢量光束。通过调整控制光的入射功率和偏振态,甜甜圈形信号光束可以转换为旋转双瓣图案,或者高斯分布信号光束的尺寸可以改变。本研究通过将超表面与热原子集成,引入了一种新颖的矢量光束整形技术,为未来需要小型化、动态操作和通用控制能力的应用提供了巨大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe5d/12061253/edfdcd830990/ADVS-12-2416617-g006.jpg

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