| Literature DB >> 24940535 |
Zahra Monemhaghdoust1, Frédéric Montfort2, Yves Emery3, Christian Depeursinge4, Christophe Moser1.
Abstract
We propose and experimentally demonstrate a digital holographic camera which can be attached to the camera port of a conventional microscope for obtaining digital holograms in a self-reference configuration, under short coherence illumination and in a single shot. A thick holographic grating filters the beam containing the sample information in two dimensions through diffraction. The filtered beam creates the reference arm of the interferometer. The spatial filtering method, based on the high angular selectivity of the thick grating, reduces the alignment sensitivity to angular displacements compared with pinhole based Fourier filtering. The addition of a thin holographic grating alters the coherence plane tilt introduced by the thick grating so as to create high-visibility interference over the entire field of view. The acquired full-field off-axis holograms are processed to retrieve the amplitude and phase information of the sample. The system produces phase images of cheek cells qualitatively similar to phase images extracted with a standard commercial DHM.Keywords: (050.1950) Diffraction gratings; (050.7330) Volume gratings; (090.1995) Digital holography; (110.0180) Microscopy; (180.3170) Interference microscopy; (330.6110) Spatial filtering
Year: 2014 PMID: 24940535 PMCID: PMC4052906 DOI: 10.1364/BOE.5.001721
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732