In situ high spectral resolution inherent and apparent optical property data from diverse aquatic environments

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Main Authors: Casey, Kimberly A, Rousseaux, Cecile S, Gregg, Watson W, Boss, Emmanuel, Chase, Alison P, Craig, Susanne E, Mouw, Colleen B, Reynolds, Rick A, Stramski, Dariusz, Ackleson, Steven G, Bricaud, Annick, Schaeffer, Blake, Lewis, Marlon R, Maritorena, Stéphane
Format: Dataset Open Access
Language:en
Published: PANGAEA 2019
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author Casey, Kimberly A
Rousseaux, Cecile S
Gregg, Watson W
Boss, Emmanuel
Chase, Alison P
Craig, Susanne E
Mouw, Colleen B
Reynolds, Rick A
Stramski, Dariusz
Ackleson, Steven G
Bricaud, Annick
Schaeffer, Blake
Lewis, Marlon R
Maritorena, Stéphane
author_facet Casey, Kimberly A
Rousseaux, Cecile S
Gregg, Watson W
Boss, Emmanuel
Chase, Alison P
Craig, Susanne E
Mouw, Colleen B
Reynolds, Rick A
Stramski, Dariusz
Ackleson, Steven G
Bricaud, Annick
Schaeffer, Blake
Lewis, Marlon R
Maritorena, Stéphane
collection Datos científicos de ciencias marinas y ambientales
contents Light emerging from natural water bodies and measured by remote sensing radiometers contains information about the local type and concentrations of phytoplankton, non-algal particles and colored dissolved organic matter in the underlying waters. An increase in spectral resolution in forthcoming satellite and airborne remote sensing missions is expected to lead to new or improved capabilities to characterize aquatic ecosystems. Such upcoming missions include NASA's Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) Mission; the NASA Surface Biology and Geology observable mission; and NASA Airborne Visible / Infrared Imaging Spectrometer (AVIRIS) - Next Generation airborne missions. In anticipation of these missions, we present an organized dataset of geographically diverse, quality-controlled, high spectral resolution inherent and apparent optical property (IOP/AOP) aquatic data. The data are intended to be of use to increase our understanding of aquatic optical properties, to develop aquatic remote sensing data product algorithms, and to perform calibration and validation activities for forthcoming aquatic-focused imaging spectrometry missions. The dataset is comprised of contributions from several investigators and investigating teams collected over a range of geographic areas and water types, including inland waters, estuaries and oceans. Specific in situ measurements include coefficients describing particulate absorption, particulate attenuation, non-algal particulate absorption, colored dissolved organic matter absorption, phytoplankton absorption, total absorption, total attenuation, particulate backscattering, and total backscattering, as well as remote sensing reflectance, and irradiance reflectance.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_902230
institution PANGAEA
language en
publishDate 2019
publisher PANGAEA
record_format pangaea
spellingShingle In situ high spectral resolution inherent and apparent optical property data from diverse aquatic environments
Casey, Kimberly A
Rousseaux, Cecile S
Gregg, Watson W
Boss, Emmanuel
Chase, Alison P
Craig, Susanne E
Mouw, Colleen B
Reynolds, Rick A
Stramski, Dariusz
Ackleson, Steven G
Bricaud, Annick
Schaeffer, Blake
Lewis, Marlon R
Maritorena, Stéphane
Date/time end; Date/time start; File content; File format; File name; File size; GlobCover; LATITUDE; LONGITUDE; Reference/source; Uniform resource locator/link to file; Uniform resource locator/link to reference
Light emerging from natural water bodies and measured by remote sensing radiometers contains information about the local type and concentrations of phytoplankton, non-algal particles and colored dissolved organic matter in the underlying waters. An increase in spectral resolution in forthcoming satellite and airborne remote sensing missions is expected to lead to new or improved capabilities to characterize aquatic ecosystems. Such upcoming missions include NASA's Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) Mission; the NASA Surface Biology and Geology observable mission; and NASA Airborne Visible / Infrared Imaging Spectrometer (AVIRIS) - Next Generation airborne missions. In anticipation of these missions, we present an organized dataset of geographically diverse, quality-controlled, high spectral resolution inherent and apparent optical property (IOP/AOP) aquatic data. The data are intended to be of use to increase our understanding of aquatic optical properties, to develop aquatic remote sensing data product algorithms, and to perform calibration and validation activities for forthcoming aquatic-focused imaging spectrometry missions. The dataset is comprised of contributions from several investigators and investigating teams collected over a range of geographic areas and water types, including inland waters, estuaries and oceans. Specific in situ measurements include coefficients describing particulate absorption, particulate attenuation, non-algal particulate absorption, colored dissolved organic matter absorption, phytoplankton absorption, total absorption, total attenuation, particulate backscattering, and total backscattering, as well as remote sensing reflectance, and irradiance reflectance.
title In situ high spectral resolution inherent and apparent optical property data from diverse aquatic environments
topic Date/time end; Date/time start; File content; File format; File name; File size; GlobCover; LATITUDE; LONGITUDE; Reference/source; Uniform resource locator/link to file; Uniform resource locator/link to reference
url https://doi.org/10.1594/PANGAEA.902230