Field determinations of the remote sensing reflectance signal are necessary to validate ocean color satellite sensors. The measurement of the above-water downwelling irradiance signal Ed(0+) is commonly made with a reference plaque of a known reflectance. The radiance reflected by the plaque (L(dspec)) can be used to determine Ed(0+) if the plaque is assumed to be near Lambertian. To test this assumption, basic experiments were conducted on a boat under changing sky conditions (clear, cloudy, covered) and with different configurations for simultaneous measurements of L(dspec) and Ed(0+). For all measurement configurations, results were satisfactory under a clear sky. Under cloudy or covered skies, shadow effects on the plaque induced errors up to 100% in the determination of Ed(0+). An appropriate measurement configuration was defined, which enabled Ed(0+) to be determined with an accuracy of better than +/- 15% regardless of the sky conditions.
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http://dx.doi.org/10.1364/ao.43.005981 | DOI Listing |
The possibility of tracking oil pollution in the sea has been an issue that has been analysed for a long time, and the use of light interactions with the sea polluted with various forms of oil has been the subject of numerous studies. This paper presents the results of the Monte Carlo simulations of the fate of a large number of virtual photons to demonstrate changes in the downwelling vector irradiance and upwelling vector irradiance in oil-free seawater and analogously seawater column polluted with an oil-in-water emulsion. The analyses were carried out for eight wavelengths ranging from 412 to 676 nm, upon the assumption of an oil concentration of 10 ppm, taking into account the data of absorption and scattering properties of the southern Baltic Sea.
View Article and Find Full Text PDFMar Drugs
January 2024
Norwegian College of Fishery Science, UiT-The Arctic University of Norway, 9037 Tromsø, Norway.
The diatom lipidome actively regulates photosynthesis and displays a high degree of plasticity in response to a light environment, either directly as structural modifications of thylakoid membranes and protein-pigment complexes, or indirectly via photoprotection mechanisms that dissipate excess light energy. This acclimation is crucial to maintaining primary production in marine systems, particularly in polar environments, due to the large temporal variations in both the intensity and wavelength distributions of downwelling solar irradiance. This study investigated the hypothesis that Arctic marine diatoms uniquely modify their lipidome, including their concentration and type of pigments, in response to wavelength-specific light quality in their environment.
View Article and Find Full Text PDFSpectral remote sensing reflectance, R(λ) (sr), is the fundamental quantity used to derive a host of bio-optical and biogeochemical properties of the water column from satellite ocean color measurements. Estimation of uncertainty in those derived geophysical products is therefore dependent on knowledge of the uncertainty in satellite-retrieved R. Furthermore, since the associated algorithms require R at multiple spectral bands, the spectral (i.
View Article and Find Full Text PDFJ Vis Exp
June 2023
Department of Physics, Yale University; Department of Physics and Astronomy, University of Pennsylvania;
Organisms appear opaque largely because their outer tissue layers are strongly scattering to incident light; strongly absorbing pigments, such as blood, typically have narrow absorbances, such that the mean free path of light outside the absorbance peaks can be quite long. As people cannot see through tissue, they generally imagine that tissues like the brain, fat, and bone contain little or no light. However, photoresponsive opsin proteins are expressed within many of these tissues, and their functions are poorly understood.
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