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High-resolution quantitative phase microscopic imaging in deep UV with phase retrieval |
Optics Letters, Vol. 36, Issue 22, pp. 4362-4364 (2011)
http://dx.doi.org/10.1364/OL.36.004362
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Abstract
High-resolution three-dimensional (3D) microscopic imaging requires the use of short wavelengths. Quantitative 3D imaging techniques, such as digital holographic microscopy, require interference between the object beam and a known reference background for the extraction of phase information. At shorter wavelengths, due to short coherence lengths, it may be difficult to implement a two-beam off-axis setup. Thus, a single-beam technique, which provides complete phase information, may be better suited for short wavelengths. This Letter describes the development of a quantitative microscopy technique at
© 2011 Optical Society of America
OCIS Codes
(050.1960) Diffraction and gratings : Diffraction theory
(100.5070) Image processing : Phase retrieval
(140.3610) Lasers and laser optics : Lasers, ultraviolet
(180.6900) Microscopy : Three-dimensional microscopy
ToC Category:
Microscopy
History
Original Manuscript: June 9, 2011
Revised Manuscript: August 26, 2011
Manuscript Accepted: October 7, 2011
Published: November 11, 2011
Virtual Issues
Vol. 7, Iss. 1 Virtual Journal for Biomedical Optics
Citation
Arun Anand, Ahmad Faridian, Vani Chhaniwal, Giancarlo Pedrini, Wolfgang Osten, and Bahram Javidi, "High-resolution quantitative phase microscopic imaging in deep UV with phase retrieval," Opt. Lett. 36, 4362-4364 (2011)
http://www.opticsinfobase.org/vjbo/abstract.cfm?URI=ol-36-22-4362
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