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用于产生高阶贝塞尔-高斯光束的多级螺旋轴棱锥

Multilevel Spiral Axicon for High-Order Bessel-Gauss Beams Generation.

作者信息

Tudor Rebeca, Bulzan George Andrei, Kusko Mihai, Kusko Cristian, Avramescu Viorel, Vasilache Dan, Gavrila Raluca

机构信息

National Institute for Research and Development in Microtechnologies IMT, 077190 Bucharest, Romania.

Faculty of Physics, University of Bucharest, 405 Atomistilor Street, 077125 Magurele, Romania.

出版信息

Nanomaterials (Basel). 2023 Jan 31;13(3):579. doi: 10.3390/nano13030579.

Abstract

This paper presents an efficient method to generate high-order Bessel-Gauss beams carrying orbital angular momentum (OAM) by using a thin and compact optical element such as a multilevel spiral axicon. This approach represents an excellent alternative for diffraction-free OAM beam generation instead of complex methods based on a doublet formed by a physical spiral phase plate and zero-order axicon, phase holograms loaded on spatial light modulators (SLMs), or the interferometric method. Here, we present the fabrication process for axicons with 16 and 32 levels, characterized by high mode conversion efficiency and good transmission for visible light (λ = 633 nm wavelength). The Bessel vortex states generated with the proposed diffractive optical elements (DOEs) can be exploited as a very useful resource for optical and quantum communication in free-space channels or in optical fibers.

摘要

本文提出了一种通过使用诸如多级螺旋轴锥镜等薄型紧凑光学元件来生成携带轨道角动量(OAM)的高阶贝塞尔 - 高斯光束的有效方法。这种方法是无衍射OAM光束生成的一种极佳替代方案,取代了基于由物理螺旋相位板和零阶轴锥镜形成的双合透镜、加载在空间光调制器(SLM)上的相位全息图或干涉测量方法等复杂方法。在此,我们展示了具有16级和32级的轴锥镜的制造过程,其特点是具有高模式转换效率和对可见光(波长λ = 633 nm)的良好透射率。利用所提出的衍射光学元件(DOE)生成的贝塞尔涡旋态可作为自由空间信道或光纤中光通信和量子通信的非常有用的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d66d/9920465/fe1109e7991f/nanomaterials-13-00579-g001.jpg

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