Title of article
A coherence approach to phase-contrast microscopy: Theory
Author/Authors
Nugent، نويسنده , , Keith A. and Arhatari، نويسنده , , Benedicta D. and Peele، نويسنده , , Andrew G.، نويسنده ,
Pages
9
From page
937
To page
945
Abstract
Optical coherence theory is used to describe image formation in a telecentric optical system. By assuming a weakly interacting object and by considering points that are not too far from the optical axis, an optical transfer function description is obtained for imaging both the phase and the amplitude components of the object. A dimensionless coordinate system is identified to allow the transfer functions to be expressed independently of the details of the imaging system. Phase-contrast imaging is found to have an essentially coherent behaviour when the coherence length is a factor of 15 larger than the system resolution, and that the coherent region of the illumination therefore does not need to encompass the object.
Keywords
phase retrieval , Transmission electron microscopy , Contrast transfer , X-ray microscopy , Partial coherence
Journal title
Astroparticle Physics
Record number
2048875
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