Processes that occur at mesoscale and submesoscale features such as eddies and fronts are important for marine ecosystem dynamics and biogeochemical fluxes. However, their impacts on the fate of biogenic organic carbon in coastal oceans are not well quantified because physical and biological interactions at such features are very complex with short time-and small spatial scales variability. As part of the California Current Ecosystem Long-Term Ecological Research (CCE-LTER) Process studies in the southern California Current in October 2008, we sampled across a strong temperature and chlorophyll front ('A-Front') separating water masses with distinct hydrographic and biogeochemical characteristics and a modified biological assemblage at the ...
The California Current System is a diatom‐dominated region characterized by seasonal coastal upwelli...
Coastal California is a dynamic upwelling region where nitrogen (N) and iron (Fe) can both limit pro...
A three-dimensional (3-D) primitive equation model, developed to simulate the circulation features (...
Processes that occur at mesoscale and submesoscale features such as eddies and fronts are important ...
Evidence gathered three decades ago showed persistently elevated total and new primary production ov...
Evidence gathered three decades ago showed persistently elevated total and new primary production ov...
In October 2008, we investigated pelagic community composition and biomass, from bacteria to fish, a...
© 2015. American Geophysical Union. All Rights Reserved. In the offshore waters of Southern Californ...
The linkage between physical climate changes and marine ecosystems has been of great interest during...
Author Posting. © Association for the Sciences of Limnology and Oceanography, 2012. This article is...
During the lifetime of the National Science Foundation\u27s Coastal Ocean Processes program, four ex...
Predicting marine carbon sequestration in a changing climate requires mechanistic understanding of t...
Coastal California is a dynamic upwelling region where nitrogen (N) and iron (Fe) can both limit pro...
A time- and depth-dependent, physical-bio-optical model was developed for the California coastal tra...
Experimental studies of phytoplankton growth and grazing processes were conducted in the coastal upw...
The California Current System is a diatom‐dominated region characterized by seasonal coastal upwelli...
Coastal California is a dynamic upwelling region where nitrogen (N) and iron (Fe) can both limit pro...
A three-dimensional (3-D) primitive equation model, developed to simulate the circulation features (...
Processes that occur at mesoscale and submesoscale features such as eddies and fronts are important ...
Evidence gathered three decades ago showed persistently elevated total and new primary production ov...
Evidence gathered three decades ago showed persistently elevated total and new primary production ov...
In October 2008, we investigated pelagic community composition and biomass, from bacteria to fish, a...
© 2015. American Geophysical Union. All Rights Reserved. In the offshore waters of Southern Californ...
The linkage between physical climate changes and marine ecosystems has been of great interest during...
Author Posting. © Association for the Sciences of Limnology and Oceanography, 2012. This article is...
During the lifetime of the National Science Foundation\u27s Coastal Ocean Processes program, four ex...
Predicting marine carbon sequestration in a changing climate requires mechanistic understanding of t...
Coastal California is a dynamic upwelling region where nitrogen (N) and iron (Fe) can both limit pro...
A time- and depth-dependent, physical-bio-optical model was developed for the California coastal tra...
Experimental studies of phytoplankton growth and grazing processes were conducted in the coastal upw...
The California Current System is a diatom‐dominated region characterized by seasonal coastal upwelli...
Coastal California is a dynamic upwelling region where nitrogen (N) and iron (Fe) can both limit pro...
A three-dimensional (3-D) primitive equation model, developed to simulate the circulation features (...