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Single-shot in-line Fresnel incoherent holography using a dual-focus checkerboard lens

机译:使用双重重量棋盘镜头单次射击线菲涅耳电话不连贯全息术

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摘要

Fresnel incoherent correlation holography (FINCH) is a technology that can acquire three-dimensional information of incoherent objects such as fluorescence with an in-line optical system. However, it is difficult to apply FINCH to dynamic phenomena, since FINCH has to detect phase-shifted holograms sequentially to eliminate twin and zero-order images. In this paper, a method in which the phase-shifted holograms can be obtained simultaneously with an in-line setup by using an optimized simulated diffraction optical element (sDOE), realized by a phase-only spatial light modulator, is proposed. The optimized sDOE is an optical device with a dual-focus lens, 2D grating, and spatial phase shifter. Therefore, the sDOE is called a dual-focus checkerboard lens. The optical experiment confirms the feasibility of the proposed method. (C) 2020 Optical Society of America
机译:菲涅耳非相干相关全息术(FinCH)是一种技术,可以获取与在线光学系统等荧光等相连对象的三维信息。 然而,难以将FinCH应用于动态现象,因为FinCH必须依次检测相移全息图以消除双单位和零级图像。 在本文中,提出了一种方法,其中通过使用由仅相位空间光调制器实现的优化的模拟衍射光学元件(Sdoe)可以在线设置同时获得相移全息图的方法。 优化的SDOE是具有双聚焦透镜,2D光栅和空间移相器的光学装置。 因此,SDOE称为双重焦点镜头镜头。 光学实验证实了所提出的方法的可行性。 (c)2020美国光学学会

著录项

  • 来源
    《Applied optics》 |2020年第22期|共7页
  • 作者单位

    Wakayama Univ Grad Sch Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

    Wakayama Univ Grad Sch Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

    Wakayama Univ Fac Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

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