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Parks, G., C. W. Dean, J. A. Kluge, A. V. Soloviev, M. Shivji, A. Tartar, K. L. Howe, S. L., E. Schwarz, H. Shen, W. Perrie, P. Schuler, 2020. Analysis of Surfactant-Associated Bacteria in the Sea Surface Microlayer Using Deoxyribonucleic Acid Sequencing and Synthetic Aperture Radar. International Journal of Remote Sensing, 41(10), 3886-3901. DOI: 10.1080/01431161.2019.1708508.
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Fujimura, A.G., S. Lehner, A. Soloviev and X. Li., 2019. Sea Surface Roughness Observed by High Resolution Radar" Remote Sensing, 11(17). ISSN: 2072-4292.
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Gommenginger, C., … Soloviev, A., ….et al. (26 authors), 2019. SEASTAR: A Mission to Study Ocean Submesoscale Dynamics and Small-Scale Atmosphere-Ocean Processes in Coastal, Shelf and Polar Seas. Frontiers in Marine Science, 6(457), 1-7. ISSN: 2296-7745.
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Lee, W., Kim, S.-H, Chu, P.-S., Moon, I.-J., Soloviev, A.V., 2019. An Index to Better Estimate Tropical Cyclone Intensity Change in the Western North Pacific. Geophysical Research Letters, 1-23. ISSN: 0094-8276.
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Pei, S., T. Shinoda, A. Soloviev, R.-C. Lien, 2018. Upper ocean response to the atmospheric cold pools associated with the Madden‐Julian Oscillation. Geophysical Research Letters, 45. DOI: 10.1029/2018GL077825.
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Howe, K.L., C.W. Dean, J. Kluge, A.V. Soloviev, A. Tartar, M. Shivji, S. Lehner, W. Perrie, 2018. Relative abundance of Bacillus spp., surfactant-associated bacterium present in a natural sea slick observed by satellite SAR imagery over the Gulf of Mexico. Elementa Science of the Anthropocene, 6(8). DOI: https://doi.org/10.1525/elementa.268.
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Soloviev, A. V., R. Lukas, M. A. Donelan, B. K. Haus, I. Ginis, 2017. Is the state of the air-sea interface a factor in rapid intensification and rapid decline of tropical cyclones? Journal of Geophysical Research: Oceans, 122, 10174-10183.
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Soloviev, A.V., A. Hirons, C. Maingot, C. W. Dean, R. E. Dodge, A. E. Yankovsky, J. Wood, R. H. Weisberg, M. E. Luther, J. P. McCreary, 2017. Southward flow on the western flank of the Florida Current. Deep Sea Research Part I: Oceanographic Research Papers, 125, 94-105. DOI: 10.1016/j.dsr.2017.05.002.
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Soloviev, A.V., B.K. Haus, M.G. McGauley, C.W. Dean, D.G. Ortiz-Suslow, N.J.M. Laxague, T.M. Özgökmen, 2016. Surface dynamics of crude and weathered oil in the presence of dispersants: Laboratory experiment and numerical simulation. Journal of Geophysical Research–Oceans, 121, 3502-3516.
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Huguenard, K. D., D. J. Bogucki, D. G. Ortiz-Suslow, N. J. M. Laxague, J. H. MacMahan, T. M. Özgökmen, B. K. Haus, A. J. H. M. Reniers, J. Hargrove, A. V. Soloviev, H. Graber (2016). On the nature of the frontal zone of the Choctawhatchee Bay plume in the Gulf of Mexico. JGR-Oceans, 121(2), 1322-1345, Gulf Oil Spill special section.
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Fujimura, A., A. Soloviev, S. H. Rhee, R. Romeiser, 2016. Coupled model simulation of wind stress effect on far wakes of ships in SAR images. IEEE Transactions on Geoscience and Remote Sensing, PP(99), 1-9.
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Kurata, N., K. Vella, A. Soloviev, A. Tartar, S. Matt, M. Shivji, W. Perrie, W., 2016. Surfactant-associated bacteria in the near-surface layer of the ocean. Nature.com/Scientific Reports, 6, 19123.
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Dean, C, A. Soloviev, A. Hirons, T. Frank, J. Wood, 2016. Biomixing Due to Diel Vertical Migrations of Zooplankton: Comparison of Computational Fluid Dynamics Model with Observations. Ocean Modelling, 98, 51-64.
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Boutin, J., Y. Chao, W. E. Asher, T. Delcroix, R. Drucker, K. Drushka, N. Kolodziejczyk, T. Lee, N. Reul, G. Reverdin, J. Schanze, A. Soloviev, L. Yu, J. Anderson, L. Brucker, E. Dinnat, A. S. Garcia, W. L. Jones, C. Maes, T. Meissner, W. Tang, N. Vinogradova, B. Ward, 2015. Satellite and In Situ Salinity: Understanding Near-Surface Stratification and Sub-footprint Variability. Bulletin of the American Meteorological Society.
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Hamilton, B., C. Dean, N. Kurata, K. Vella, A. Soloviev, A. Tartar, M. Shivji, S. Matt, W. Perrie, S. Lehner, 2015. Surfactant associated bacteria in the sea surface microlayer: Case studies in the Straits of Florida and the Gulf of Mexico. Canadian Journal of Remote Sensing, 41(2), 135-143.
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Soloviev, A.V., S. Matt, and A. Fujimura, 2015. Three-Dimensional Dynamics of Freshwater Lenses in the Ocean’s Near-Surface Layer. Oceanography, 28(1), 142-149, 2015.
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Soloviev, A., R. Lukas, M. Donelan, B. Haus, and I. Ginis, 2014. The air-sea interface and surface stress under tropical cyclones. Nature.com/Scientific Reports, 4, 5306.
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Rascle, N., B. Chapron, F. Ardhuin, A. Soloviev, 2013. A note on the Direct Injection of Turbulence by Breaking Waves. Ocean Modelling, 70, 145-151.
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Soloviev, A., A. Fujimura, and S. Matt, 2012. Air-Sea Interface in Hurricane Conditions. Journal of Geophysical Research - Oceans 117, C00J34, DOI:10.1029/2011JC007760.
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Soloviev, A., C. Maingot, M. Agor, L. Nash, and K. Dixon, 2012. 3D Sonar Measurements in Wakes of Ships of Opportunity. Journal of Atmospheric and Oceanic Technology, 29, 880-886.
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Dubrovin, K., E. Golbraikh, M. Gedalin, and A. Soloviev, 2011. Turbulent viscosity variability in self-preserving far wake with zero net momentum. Physical Review, E 84, 027302-1 – 027302-4.
- Matt, S., A. Soloviev, S. Rhee, 2011. Modification of Turbulence Air-Sea Interface Due to the Presence of Surfactants and Implications for Gas Exchange. Part II: Numerical Simulations. In: Gas Transfer at Water Surfaces, Kyoto University Press, 299-312.
- Soloviev, A., S. Matt, M. Gilman, H. Hühnerfuss, B. Haus, D. Jeong, I. Savelyev, M. Donelan, 2011. Modification of turbulence at the air-sea interface due to the presence of surfactants and implications for gas exchange. Part I: laboratory experiment. In: Gas Transfer at Water Surfaces, Kyoto University Press, 245-258.
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Gilman, M., A. Soloviev, and H. Graber, 2011. Study of the Far Wake of a Large Ship. Journal of Atmospheric and Oceanic Technology, 28, 720-733.
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Brusch, S., S. Lehner, T. Fritz, A. Soloviev, and B. van Schie, 2011. Ship Surveillance with TerraSAR-X. IEEE Transactions on Geoscience and Remote Sensing (TGRS), 49(3), 1092-1103.
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Soloviev, A.V. and R. Lukas, 2010. Effects of Bubbles and Sea Spray on Air-Sea Exchange in Hurricane Conditions. Boundary-Layer Meteorology, 136, 365-376.
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Fujimura, A., A. Soloviev, and V. Kudryavtsev, 2010. Numerical simulation of the wind-stress effect on SAR imagery of far wakes of ships. IEEE Geoscience and Remote Sensing Letters, 7, 646-649.
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Soloviev, A.V., M. Gilman, K. Young, S. Brusch, and S. Lehner, 2010. Sonar measurements in ship wakes simultaneous with TerraSAR-X overpasses. Geoscience and Remote Sensing, IEEE Transactions, 48, 841-851.
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Soloviev, A., M. Donelan, H. Graber, and B. Haus, 2007. An approach to estimation of near-surface turbulence and CO2 transfer velocity from remote sensing data. Journal of Marine Systems (Elsevier) 66, 182-194.
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Soloviev, A.V., 2007. Coupled Renewal Model of Ocean Viscous Sublayer, Thermal Skin Effect and Interfacial Gas Transfer Velocity. Journal of Marine Systems (Elsevier), 66, 19-27.
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Katsaros, K.B., A.V. Soloviev, R.H. Weisberg, and M.E. Luther, 2005. Reduced Horizontal Sea Surface Temperature Gradients under Conditions of Clear Skies and Weak Winds. Boundary-Layer Meteorology, 116, 175-185.
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Wanninkhof, R., K.F. Sullivan, W.P. Dammann, J.R. Proni, F. Bloetscher, A.V. Soloviev, and T.P. Carsey, 2005. Farfield Tracing of a Point Source Discharge Plume in the Coastal Ocean Using Sulfur Hexaflouride. Environmental Science & Technology, 39, 8,883-8,890.
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Katsaros, K.B. and A.V. Soloviev, 2004. Vanishing Horizontal Sea Surface Temperature Gradients at Low Wind Speeds. Boundary-Layer Meteorology, 112, 381-396.
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Soloviev, A.V., M.E. Luther, and R.H. Weisberg, 2003. Energetic baroclinic super-tidal oscillations on the Southeast Florida shelf. Geophysical Research Letters, 30(90, 1463. DOI:10.1029/2002GL016603.
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Soloviev, A.V., R.J. Walker, R.H. Weisberg, and M.E. Luther, 2003. Coastal Observatory Investigates Energetic Current Oscillation on the Southeast Florida Shelf. EOS, Transactions, AGU, 84(42), 11 October 2003, 441-450.
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Soloviev, A. and R. Lukas, 2003. Observation of Wave Enhanced Turbulence in the Near Surface Layer of the Ocean During TOGA COARE. Deep-Sea Research Part I, 371-395.
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Shay, L.K., Cook, T.M., Peters, H., Mariano, A.J., Weisberg, R., An, P.E.., A. Soloviev, and M. Luther, 2002. Very high-frequency radar mapping of surface currents. IEEE Journal of Oceanic Engineering, 27(2), 155-169.
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Soloviev, A., R. Lukas, and H. Matsuura, 2002. Sharp Frontal Interfaces in the Near-Surface Layer of the Tropical Ocean. Journal of Marine Systems (Elsevier) 37(1-3), 47-68.
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Schluessel, P. and A. Soloviev, 2002. Air-sea gas exchange: Cool skin and gas transfer velocity in the North Atlantic Ocean during GasEx-98. Advances in Space Research 29(1), 107-110.
- Soloviev, A. and B. Klinger, 2002. Convection: Convection in the Ocean. In: Encyclopedia of Atmospheric Sciences. University of Cambridge, UK, 521-528.
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Soloviev, A., R. Lukas, and P. Hacker, 2001. An approach to parameterization of the oceanic turbulent boundary layer in the western Pacific warm pool. Journal of Geophysical Research, 106, 4421-4435.
- Soloviev, A. and B. Klinger, 2001. Open Ocean Convection. In: Encyclopedia of Ocean Sciences, Academic Press, UK, 2015-2022.
- Soloviev, A., J. Edson, W. McGillis, P. Schluessel, and R. Wanninkhof, 2001. Fine Thermohaline Structure and Gas-Exchange in the Near-Surface Layer of the Ocean During GasEx-98. In AGU Monograph Gas Transfer at Water Surfaces, Eds. E.S. Saltzman, M. Donealn, W. Drennan, and R. Wanninkhof, 181-185.
- Soloviev, A. and P. Schluessel, 2001. A Model of the Air-Sea Gas Exchange Incorporating the Physics of the Turbulent Boundary Layer and the Properties of the Sea Surface. In: AGU Monograph Gas Transfer at Water Surfaces. Eds. E.S. Saltzman, M. Donealn, W. Drennan, and R. Wanninkhof, 141-146.
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Shay, L. K., T. M. Cook, B. K. Haus, J. Martinez, H. Peters, J. VanLeer, A. J. Mariano, P. E. An, S. Smith, A. Soloviev, R. Weisberg, and M. Luther, 2000. VHF Radar detects submesoscale vortex along the Florida Coast. EOS, 81, 209-213.
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Soloviev, A.V., R. Lukas, and P. Hacker, 2000. Horizontal structure of the upper ocean velocity and density fields in the western equatorial Pacific warm pool: Depth range from 20 to 250m. Journal of Physical Oceanography, 30, 416-432.
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Soloviev, A., R. Lukas, S., P. Hacker, H. Schoeberlein, M. Baker, and A. Arjannikov, 1999. A near-surface microstructure sensor system used during TOGA COARE. Part II: Turbulence Measurements. Journal of Atmospheric and Oceanic Technology, 16, 1598-1618.
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Soloviev, A., R. Lukas, S. DeCarlo, J. Snyder, A. Arjannikov, V.Turenko, M. Baker, and D. Khlebnikov, 1998. A near-surface microstructure sensor system used during TOGA COARE. Part I: Bow Measurements. Journal of Atmospheric and Oceanic Technology, 15, 563-578.
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Soloviev, A. and P. Schluessel, 1998. Comments on "Air-Sea Gas Transfer: Mechanisms and Parameterization." Journal of Physical Oceanography, 28, 1643-1645.
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Soloviev, A.V. and R. Lukas, 1997. Sharp frontal interfaces in near-surface layer of the ocean in the western equatorial Pacific warm pool. Journal of Physical Oceanography, 27, 999-1017.
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Soloviev, A.V. and R. Lukas, 1997. Observation of large diurnal warming events in the near-surface layer of the western equatorial Pacific warm pool. Deep-Sea Research, 44, 1055-1076.
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Schluessel, P., A. Soloviev, and W. Emery, 1997. Cool and freshwater skin of the ocean during rainfall. Boundary-Layer Meteorology, 82, 437-472.
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Soloviev, A.V. and R. Lukas, 1996: Observation of spatial variability of diurnal thermocline and rain-formed halocline in the western Pacific warm pool. Journal of Physical Oceanography, 26, 2529-2538.
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Soloviev, A.V. and P. Schluessel, 1996: Evolution of cool skin and direct air-sea gas transfer coefficient during daytime. Boundary-Layer Meteorology, 77, 45-68.
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Soloviev, A.V. and P. Schluessel, 1994: Parameterization of the cool skin of the ocean and of the air-ocean gas transfer on the basis of modeling surface renewal. Journal of Physical Oceanography, 24, 1339-1346.
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Kudryavtsev, V.N. and A.V. Soloviev, 1990. Slippery near-surface layer of the ocean arising due to daytime solar heating. Journal of Physical Oceanography, 20, 617-627.
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Soloviev, A.V., 1990. Coherent structure at the ocean surface in the convectively unstable conditions. Nature, 346, 157-160.