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通过角谱压缩合成亚衍射准无衍射光束。

Synthesis of sub-diffraction quasi-non-diffracting beams by angular spectrum compression.

作者信息

Zhang Shuo, Chen Hao, Wu Zhixiang, Zhang Kun, Li Yuyan, Chen Gang, Zhang Zhihai, Wen Zhongquan, Dai Luru, Wang And Lingfang

出版信息

Opt Express. 2017 Oct 30;25(22):27104-27118. doi: 10.1364/OE.25.027104.

Abstract

Quasi-non-diffracting beams are attractive for various applications, including optical manipulation, super-resolution microscopes, and materials processing. However, it is a great challenge to design and generate super-long quasi-non-diffracting beams with sub-diffraction and sub-wavelength size. In this paper, a method based on the idea of compressing a normalized angular spectrum is developed, which makes it possible and provides a practical tool for the design of a quasi-non-diffracting beam with super-oscillatory sub-wavelength transverse size. It also presents a clear physical picture of the formation of super-oscillatory quasi-non-diffracting beams. Based on concepts of a local grating and super-oscillation, a lens was designed and fabricated for a working wavelength of λ = 632.8 nm. The validity of the idea of normalized angular spectrum compression was confirmed by both numerical investigations and experimental studies. An optical hollow needle with a length of more than 100λ was experimentally demonstrated, in which an optical hollow needle was observed with a sub-diffraction and sub-wavelength transverse size within a non-diffracting propagation distance of 94λ. Longer non-diffracting propagation distance is expected for a lens with larger radius and shorter effective wavelength.

摘要

准非衍射光束在包括光学操控、超分辨率显微镜和材料加工等各种应用中具有吸引力。然而,设计并产生具有亚衍射和亚波长尺寸的超长准非衍射光束是一项巨大的挑战。本文提出了一种基于压缩归一化角谱思想的方法,这使得设计具有超振荡亚波长横向尺寸的准非衍射光束成为可能,并提供了一种实用工具。它还清晰地展示了超振荡准非衍射光束的形成物理图像。基于局部光栅和超振荡的概念,设计并制作了一个工作波长为λ = 632.8 nm的透镜。数值研究和实验研究均证实了归一化角谱压缩思想的有效性。通过实验展示了一个长度超过100λ的光学空心针,在94λ的非衍射传播距离内观察到了具有亚衍射和亚波长横向尺寸的光学空心针。对于半径更大且有效波长更短的透镜,有望实现更长的非衍射传播距离。

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