JOURNAL ARTICLE

Digital Holography for Shape Measurement of Transparent Microscopic Object

Abstract

Digital holographic microscopy is very suitable for the measurement of the biological cells and tissue. An off-axis Fresnel digital holographic system with pre-magnification is built. The recording and numerical reconstruction of digital hologram is analyzed. Experimental investigations have been performed for a USAF test target. The accurate phase image is obtained by combining the automatic phase aberration compensation procedure proposed by T.Colomb with the manual adjustment method. The lateral resolution with better than 1 and the axial resolution of no larger than 10 nm have been achieved experimentally, which are coincident with the theoretical prediction very well. The results show that the recording of high quality digital hologram is critical important for quasi real-time phase reconstruction.

Keywords:
Digital holographic microscopy Holography Digital holography Magnification Optics Computer science Compensation (psychology) Digital recording Phase (matter) Iterative reconstruction Image resolution Resolution (logic) Computer vision Artificial intelligence Physics

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Topics

Digital Holography and Microscopy
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Optical measurement and interference techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Advanced X-ray Imaging Techniques
Physical Sciences →  Physics and Astronomy →  Radiation

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