Dariusz Stramski
Affiliations: | Oceanography | University of California, San Diego, La Jolla, CA |
Area:
Optics Physics, Physical Oceanography, BiogeochemistryGoogle:
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Publications
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Kehrli MD, Stramski D, Reynolds RA, et al. (2024) Model for partitioning the non-phytoplankton absorption coefficient of seawater in the ultraviolet and visible spectral range into the contributions of non-algal particulate and dissolved organic matter. Applied Optics. 63: 4252-4270 |
Kehrli MD, Stramski D, Reynolds RA, et al. (2023) Estimation of chromophoric dissolved organic matter and non-algal particulate absorption coefficients of seawater in the ultraviolet by extrapolation from the visible spectral region. Optics Express. 31: 17450-17479 |
Casey KA, Rousseaux CS, Gregg WW, et al. (2022) A global compilation of in situ aquatic high spectral resolution inherent and apparent optical property data for remote sensing applications. Earth System Science Data. 12: 1123-1139 |
Koestner D, Stramski D, Reynolds RA. (2022) Characterization of suspended particulate matter in contrasting coastal marine environments with angle-resolved polarized light scattering measurements. Applied Optics. 60: 11161-11179 |
Reynolds RA, Stramski D. (2021) Variability in Oceanic Particle Size Distributions and Estimation of Size Class Contributions Using a Non-parametric Approach. Journal of Geophysical Research. Oceans. 126: e2021JC017946 |
Koestner D, Stramski D, Reynolds RA. (2021) Polarized light scattering measurements as a means to characterize particle size and composition of natural assemblages of marine particles: erratum. Applied Optics. 60: 380-382 |
Koestner D, Stramski D, Reynolds RA. (2020) Polarized light scattering measurements as a means to characterize particle size and composition of natural assemblages of marine particles: publisher's note. Applied Optics. 59: 9233 |
Koestner D, Stramski D, Reynolds RA. (2020) Polarized light scattering measurements as a means to characterize particle size and composition of natural assemblages of marine particles. Applied Optics. 59: 8314-8334 |
Runyan H, Reynolds RA, Stramski D. (2020) Evaluation of Particle Size Distribution Metrics to Estimate the Relative Contributions of Different Size Fractions Based on Measurements in Arctic Waters. Journal of Geophysical Research. Oceans. 125: e2020JC016218 |
Casey KA, Rousseaux CS, Gregg WW, et al. (2020) A global compilation of in situ aquatic high spectral resolution inherent and apparent optical property data for remote sensing applications Earth System Science Data. 12: 1123-1139 |