Abstract
The effects of scatterer size and scattering coefficient on backscattered linearly and circularly polarized light are investigated through Stokes polarimetry. High-SNR polarization modulation/synchronous detection measurements are corroborated by polarization-sensitive Monte Carlo simulations. Circular degree of polarization (DOP) is found to be sensitive to scatterer size, but is equivocal at times due to helicity flipping effects; linear DOP appears to be mostly dependent on the medium scattering coefficient. We exploit these trends to generate a DOP C - DOP L response surface which clusters turbid samples based on these medium properties. This work may prove useful in biomedicine, for example in noninvasive assessment of epithelial precancer progression.
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CITATION STYLE
Singh, M. D., & Vitkin, I. A. (2021). Discriminating turbid media by scatterer size and scattering coefficient using backscattered linearly and circularly polarized light. Biomedical Optics Express, 12(11), 6831. https://doi.org/10.1364/boe.438631
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