首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analysis of optical vortices with suppressed sidelobes using modified Bessel-like function and trapezoid annulus modulation structures
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Analysis of optical vortices with suppressed sidelobes using modified Bessel-like function and trapezoid annulus modulation structures

机译:使用改进的贝塞尔函数和梯形环调制结构分析抑制旁瓣的光学涡旋

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摘要

Two amplitude modulation methods, including modified Bessel-like function modulation structure and trapezoid annulus structure, for suppressing sidelobes of optical vortices are studied. In the former approach, we propose that the order of the Bessel-like function can be an additional parameter to modulate diffraction patterns of optical vortices motivated by the idea of conventional annulus structures. Furthermore, new Bessel-like modulation functions are introduced to solve the problem of low diffraction efficiency of the original one. Trapezoid annulus structure is proposed as a compromise structure between the modified Bessel-like modulation structure and the conventional annulus one, and has advantages of both. It is demonstrated that these two approaches can achieve high-quality optical vortices with suppressed sidelobes effectively, and the relative structures behave as more flexible and applicable structures for producing optical vortices with large coverage of topological charges, which suggests great potential in simplifying the structure designing procedure. These reliable and generalized structures for generating high-quality optical vortices will help to promote the development of future optical communication and optical manipulation significantly. (C) 2015 Optical Society of America
机译:研究了两种抑制光涡旋旁瓣的调幅方法,包括改进的贝塞尔函数调制结构和梯形环结构。在前一种方法中,我们提出,贝塞尔函数的阶数可以是调制常规环空结构的动机所激发的光学涡旋衍射图的附加参数。此外,引入了新的类似于贝塞尔的调制函数以解决原始函数的低衍射效率的问题。梯形环形结构被提出作为改进的贝塞尔式调制结构和常规环形结构之间的折衷结构,并且具有两者的优点。结果表明,这两种方法均能有效地实现旁瓣抑制的高质量光学涡流,并且相对结构具有更灵活,更适用的结构,可用于产生拓扑电荷覆盖率大的光学涡流,这在简化结构设计方面具有巨大的潜力。程序。这些用于生成高质量光学涡旋的可靠且通用的结构将有助于显着促进未来光学通信和光学操纵的发展。 (C)2015年美国眼镜学会

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