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Polarized light in coastal waters: hyperspectral and multiangular analysis
Alberto Tonizzo1, Jing Zhou, Alexander Gilerson
1Optical Remote Sensing Laboratory, the City College and the Graduate Center of CUNY, New York, NY 10031, United States.
Researchers measured underwater polarized light in New York Harbor using a new polarimeter. Findings on light polarization align with theoretical models and simulations, validating the instrument
Area of Science:
- Ocean optics
- Remote sensing
- Polarimetry
Background:
- Understanding underwater light fields is crucial for oceanographic studies.
- Polarized light measurements provide unique insights into water properties.
Purpose of the Study:
- To measure the underwater polarized light field in coastal waters.
- To validate a new hyperspectral and multiangular polarimeter.
- To compare field measurements with theoretical models.
Main Methods:
- Field measurements using a novel hyperspectral and multiangular polarimeter.
- Data collection in New York Harbor - Sandy Hook, NJ coastal region.
- Comparison with Monte Carlo radiative transfer simulations.
Main Results:
- Angular and spectral variations of polarization degree were consistent with theory.
- Maximum polarization degree observed was below 0.4 near 100° scattering angle.
- Normalized radiances and polarization showed good agreement with simulations.
Conclusions:
- The developed polarimeter is effective for measuring underwater polarized light.
- Field data supports theoretical models of light propagation in coastal waters.
- The study validates radiative transfer models for atmosphere-ocean systems.
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