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  4. Numerical dispersion compensation for Partial Coherence Interferometry and Optical Coherence Tomography
 
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Numerical dispersion compensation for Partial Coherence Interferometry and Optical Coherence Tomography

Fercher, A. F.
•
Hitzenberger, C. K.
•
Sticker, M.
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2001
Optics Express

Dispersive samples introduce a wavelength dependent phase distortion to the probe beam. This leads to a noticeable loss of depth resolution in high resolution OCT using broadband light sources. The standard technique to avoid this consequence is to balance the dispersion of the sample by arranging a dispersive material in the reference arm. However, the impact of dispersion is depth dependent. A corresponding depth dependent dispersion balancing technique is diffcult to implement. Here we present a numerical dispersion compensation technique for Partial Coherence Interferometry (PCI) and Optical Coherence Tomography (OCT) based on numerical correlation of the depth scan signal with a depth variant kernel. It can be used a posteriori and provides depth dependent dispersion compensation. Examples of dispersion compensated depth scan signals obtained from microscope cover glasses are presented. (C) 2001 Optical Society of America.

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oe-9-12-610.pdf

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http://purl.org/coar/version/c_970fb48d4fbd8a85

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