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通过多焦点合成实现均匀强度手性光场。

Uniform intensity chiral optical field by multifocal synthesis.

作者信息

Wang Dingyi, Li Yan, Liu Rui, Sun Libin, Deng Duo, Liu Yi

出版信息

Opt Lett. 2024 Jul 15;49(14):3890-3893. doi: 10.1364/OL.528531.

Abstract

Chiral optical beams that carry orbital angular momentum (OAM) have a broad range of applications such as optical tweezers, chiral microstructure fabrication, and optical communications. However, some chiral optical beams have inhomogeneous intensity distribution that limits the application in these fields. In this Letter, two different types of chiral optical fields with uniform intensity and arbitrary length were proposed based on the amplitude encoding method and multifocal synthesis. The intensity distribution of the chiral optical fields is determined by the distance between the focal points that can greatly extend the modulation length of the chiral optical field. Moreover, since each focal point contains modulable amplitude and phase, an arbitrary interception of the optical field can be realized by selectively retaining a part of the focal points. By partitioning the chiral optical field and assigning different topological charges, the OAM space-division multiplexing and independent tunability of the topological charges can be realized. In addition, the composite multi-petal vortex array formed by combining two different chiral optical fields can greatly enhance the information capacity of the optical communications and may have potential applications in fields such as particle manipulation.

摘要

携带轨道角动量(OAM)的手性光束在诸如光镊、手性微结构制造和光通信等领域有广泛应用。然而,一些手性光束具有不均匀的强度分布,这限制了它们在这些领域的应用。在本信函中,基于幅度编码方法和多焦点合成,提出了两种具有均匀强度和任意长度的不同类型的手性光场。手性光场的强度分布由焦点之间的距离决定,这可以极大地扩展手性光场的调制长度。此外,由于每个焦点都包含可调制的幅度和相位,通过选择性地保留一部分焦点,可以实现对光场的任意截取。通过对手性光场进行划分并赋予不同的拓扑电荷,可以实现OAM的空分复用和拓扑电荷的独立可调性。此外,由两种不同的手性光场组合形成的复合多瓣涡旋阵列可以极大地提高光通信的信息容量,并且可能在诸如粒子操纵等领域有潜在应用。

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