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基于二维动态相位光栅的数字全息超分辨率技术。

Super-resolution in digital holography by a two-dimensional dynamic phase grating.

作者信息

Paturzo M, Merola F, Grilli S, De Nicola S, Finizio A, Ferraro P

机构信息

CNR- Istituto Nazionale di Ottica Applicata, Pozzuoli NA, Italy.

出版信息

Opt Express. 2008 Oct 13;16(21):17107-18. doi: 10.1364/oe.16.017107.

Abstract

An approach that uses an electro-optically tunable two dimensional phase grating to enhance the resolution in digital holographic microscopy is proposed. We show that, by means of a flexible hexagonal phase grating, it is possible to increase the numerical aperture of the imaging system, thus improving the spatial resolution of the images in two dimensions. The augment of the numerical aperture of the optical system is obtained by recording spatially multiplexed digital holograms. The grating tuneability allows one to adjust the intensity among the spatially multiplexed holograms maximizing the grating diffraction efficiency. Furthermore we demonstrate that the flexibility of the numerical reconstruction allows one to use selectively the diffraction orders carrying useful information for increasing the spatial resolution. The proposed approach can improve the capabilities of digital holography in three-dimensional imaging and microscopy.

摘要

提出了一种利用电光可调谐二维相位光栅提高数字全息显微镜分辨率的方法。我们表明,借助柔性六边形相位光栅,可以增加成像系统的数值孔径,从而在二维上提高图像的空间分辨率。通过记录空间复用数字全息图来获得光学系统数值孔径的增大。光栅的可调谐性允许调整空间复用全息图之间的强度,从而使光栅衍射效率最大化。此外,我们证明了数值重建的灵活性允许选择性地使用携带有用信息的衍射级次来提高空间分辨率。所提出的方法可以提高数字全息术在三维成像和显微镜方面的能力。

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