


2021 Ames Earth Science Publications
December 2021
Prediction models for urban flood evolution for satellite remote sensing Lammers, R., Li, A., Nag, S. and Ravindra, V., 2021. Prediction Models for Urban Flood Evolution for Satellite Remote Sensing. Journal of Hydrology, p.127175. DOI: 10.1016/j.jhydrol.2021.127175 |
Probabilistic Machine Learning Estimation of Ocean Mixed Layer Depth From Dense Satellite and Sparse In Situ Observations Foster, D., Gagne, II D. J., & Whitt, D. B. (2021). Probabilistic machine learning estimation of ocean mixed layer depth from dense satellite and sparse in situ observations. Journal of Advances in Modeling Earth Systems, 13, e2021MS002474. DOI: https://doi.org/10.1029/2021MS002474 |
Cloud and Aerosol Distributions from SAGE III/ISS Observations Schoeberl, M., Jensen, E., Wang, T., Taha, G., Ueyama, R., Wang, Y., et al. (2021). Cloud and aerosol distributions from SAGE III/ISS observations. Journal of Geophysical Research: Atmospheres, 126, e2021JD035550. https://doi.org/10.1029/2021JD035550 |
November 2021
OpenET: Filling a Critical Data Gap in Water Management for the Western United States Melton, F.S., Huntington, J., Grimm, R., Herring, J., Hall, M., Rollison, D., Erickson, T., Allen, R., Anderson, M., Fisher, J.B., Kilic, A., G.B. Senay, J. Volk,C. Hain, L Johnson, A. Ruhoff,P. Blankenau, M. Bromley, W. Carrara, B. Daudert, C. Doherty, C. Dunkerly, M. Friedrichs, A. Guzman, G. Halverson, J. Hansen, J. Harding, Y. Kang, D. Ketchum, B. Minor, Charles Morton, S. Ortega-Salazar, T. Ott, M. Ozdogan, P.M. ReVelle, M. Schull, C. Wang, Y. Yang and R.G. Anderson 2021. OpenET: Filling a critical data gap in water management for the western united states. JAWRA Journal of the American Water Resources Association, JAWR-20-0084-P. DOI:10.1111/1752-1688.12956. |
Rapid cloud removal of dimethyl sulfide oxidation products limits SO2 and cloud condensation nuclei production in the marine atmosphere G.A. Novak, C.H. Fite, C.D. Holmes, P.R. Veres, J.A. Neuman, I. Faloona, J.A. Thornton, G.M. Wolfe, M.P. Vermeuel, C.M. Jernigan, J. Peischl, T.B. Ryerson, C.R. Thompson, I. Bourgeois, C. Warneke, G.I. Gkatzelis, M.M. Coggon, K. Sekimoto, T.P. Bui, J. Dean-Day, G.S. Diskin, J.P. DiGangi, J.B. Nowak, R.H. Moore, E.B. Wiggins, E.L. Winstead, C. Robinson, K.L. Thornhill, K.J. Sanchez, S.R. Hall, K. Ullmann, M. Dollner, B. Weinzierl, D.R. Blake, T.H. Bertram (2021), Rapid cloud removal of dimethyl sulfide oxidation products limits SO2 and cloud condensation nuclei production in the marine atmosphere, Proceedings of the National Academy of Sciences 118 (42) e2110472118. DOI: 10.1073/pnas.2110472118 |
Fusing Geostationary Satellite Observations with Harmonized Landsat-8 and Sentinel-2 Time Series for Monitoring Field-Scale Land Surface Phenology Shen, Y.; Zhang, X.; Wang, W.; Nemani, R.; Ye, Y.; Wang, J. (2021) Fusing Geostationary Satellite Observations with Harmonized Landsat-8 and Sentinel-2 Time Series for Monitoring Field-Scale Land Surface Phenology. Remote Sensing 13, 4465. DOI: 10.3390/rs13214465 |
A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeastern Atlantic during 2016–2018: Part 1 – Climatology Ryoo, J.-M., Pfister, L., Ueyama, R., Zuidema, P., Wood, R., Chang, I., and Redemann, J. (2021): A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeastern Atlantic during 2016–2018: Part 1 – Climatology, Atmos. Chem. Phys., 21, 16689–16707. DOI:10.5194/acp-21-16689-2021 |
Seasonal Modulation of Dissolved Oxygen in the Equatorial Pacific by Tropical Instability Vortices Eddebbar, Y.A., Subramanian, A.C., Whitt, D.B., Long, M.C., Verdy, A., Mazloff, M.R. and Merrifield, M.A., 2021. Seasonal Modulation of Dissolved Oxygen in the Equatorial Pacific by Tropical Instability Vortices. Journal of Geophysical Research: Oceans, p.e2021JC017567. DOI: 10.1029/2021JC017567 |

Dwane Roth (right), a fourth generation grain farmer in Finney County, Kansas, stands with nephew Zion (left) in one of their corn fields. Roth’s farm became one of the first Water Technology Farms in Kansas around 2016, and he has been using OpenET data for the past few years to track evapotranspiration rates and conserve water.
Photo courtesy of Dwane Roth
October 2021
Validation of methane and carbon monoxide from Sentinel-5 Precursor using TCCON and NDACC-IRWG stations Sha, M. K., Langerock, B., Blavier, J.-F. L., Blumenstock, T., Borsdorff, T., Buschmann, M., Dehn, A., De Mazière, M., Deutscher, N. M., Feist, D. G., García, O. E., Griffith, D. W. T., Grutter, M., Hannigan, J. W., Hase, F., Heikkinen, P., Hermans, C., Iraci, L. T., et al. (2021): Validation of methane and carbon monoxide from Sentinel-5 Precursor using TCCON and NDACC-IRWG stations, Atmos. Meas. Tech., 14, 6249–6304, DOI:10.5194/amt-14-6249-2021. |
Long-term monitoring of evapotranspiration using the SEBAL algorithm and Google Earth Engine cloud computing Laipelt, L., Kayser, R.H.B., Fleischmann, A.S., Ruhoff, A., Bastiaanssen, W., Erickson, T.A. and Melton, F., 2021. Long-term monitoring of evapotranspiration using the SEBAL algorithm and Google Earth Engine cloud computing. ISPRS Journal of Photogrammetry and Remote Sensing, 178, pp.81-96. |
River Streamflow, Remotely Sensed Water Quality, and Benthic Composition of Previously Undescribed Nearshore Coral Reefs in Northern Puerto Rico Torres-Pérez, J.L., Ramos-Scharrón, C.E., Hernández, W.J., Armstrong, R.A., Barreto-Orta, M., Ortiz-Zayas, J., Guild L.S., and Viqueira, R. (2021). River streamflow, remotely sensed water quality, and benthic composition of previously undescribed nearshore coral reefs in northern Puerto Rico. Frontiers in Marine Science. 8: 720712. DOI: 10.3389/fmars.2021.720712 |
Observations of supermicron-sized aerosols originating from biomass burning in southern Central Africa Miller, R. M., McFarquhar, G. M., Rauber, R. M., O’Brien, J. R., Gupta, S., Segal-Rozenhaimer, M., Dobracki, A. N., Sedlacek, A. J., Burton, S. P., Howell, S. G., Freitag, S., and Dang, C. (2021), Observations of supermicron-sized aerosols originating from biomass burning in southern Central Africa, Atmos. Chem. Phys., 21, 14815–14831, DOI:10.5194/acp-21-14815-2021. |
Assessing the utility of remote sensing data to accurately estimate changes in groundwater storage Ahamed, A., Knight, R., Alam, S., Pauloo, R. and Melton, F., 2021. Assessing the utility of remote sensing data to accurately estimate changes in groundwater storage. Science of The Total Environment, 807(1):150635. |
Ambient aerosol properties in the remote atmosphere from global-scale in situ measurements Brock, C. A., Froyd, K. D., Dollner, M., Williamson, C. J., Schill, G., Murphy, D. M., Wagner, N. J., Kupc, A., Jimenez, J. L., Campuzano-Jost, P., Nault, B. A., Schroder, J. C., Day, D. A., Price, D. J., Weinzierl, B., Schwarz, J. P., Katich, J. M., Wang, S., Zeng, L., Weber, R., Dibb, J., Scheuer, E., Diskin, G. S., DiGangi, J. P., Bui, T., Dean-Day, J. M., Thompson, C. R., Peischl, J., Ryerson, T. B., Bourgeois, I., Daube, B. C., Commane, R., and Wofsy, S. C.: Ambient aerosol properties in the remote atmosphere from global-scale in situ measurements, Atmos. Chem. Phys., 21, 15023–15063, DOI:10.5194/acp-21-15023-2021, 2021. |
Location of studies and evidence of effects of herbivory on Arctic vegetation: a systematic map Soininen, E.M., I. C. Barrio, R. Bjørkås, K. Björnsdóttir, D. Ehrich, K. A. Hopping, E. Kaarlejärvi, A. L. Kolstad, S. Abdulmanova, R. G. Björk, C. G. Bueno, I. Eischeid, R. Finger-Higgens, J. S. Forbey, C. Gignac, O. Gilg, M. den Herder, H. S. Holm, B. C. Hwang, J. U. Jepsen, S. Kamenova, I. Kater, A. M. Koltz, J. A. Kristensen, C. J. Little, P. Macek, K. M. Mathisen, D. B. Metcalfe, J. B. Mosbacher, M. Mörsdorf, T. Park, J. R. Propster, A. J. Roberts, E. Serrano, M. P. Spiegel, M. Tamayo, M. W. Tuomi, M. Verma, K. E. M. Vuorinen, M. Väisänen, R. van der Wal, M. E. Wilcots, N. G. Yoccoz & J. D. M. Speed, 2021. Location of studies and evidence of effects of herbivory on Arctic vegetation: a systematic map. Environmental Evidence, 10(1), pp.1-21. |
flux-data-qaqc: A Python Package for Energy Balance Closure and Post-Processing of Eddy Flux Data Volk, J., Huntington, J., Allen, R., Melton, F., Anderson, M. and Kilic, A., 2021. flux-data-qaqc: A Python Package for Energy Balance Closure and Post-Processing of Eddy Flux Data. Journal of Open Source Software, 6(66), #3418 (6pp). DOI:10.21105/joss.03418 |
UAS Chromatograph for Atmospheric Trace Species (UCATS) – a versatile instrument for trace gas measurements on airborne platforms Hintsa, E. J., Moore, F. L., Hurst, D. F., Dutton, G. S., Hall, B. D., Nance, J. D., Miller, B. R., Montzka, S. A., Wolton, L. P., McClure-Begley, A., Elkins, J. W., Hall, E. G., Jordan, A. F., Rollins, A. W., Thornberry, T. D., Watts, L. A., Thompson, C. R., Peischl, J., Bourgeois, I., Ryerson, T. B., Daube, B. C., Gonzalez Ramos, Y., Commane, R., Santoni, G. W., Pittman, J. V., Wofsy, S. C., Kort, E., Diskin, G. S., and Bui, T. P. (2021): UAS Chromatograph for Atmospheric Trace Species (UCATS) – a versatile instrument for trace gas measurements on airborne platforms, Atmos. Meas. Tech., 14, 6795–6819. DOI:10.5194/amt-14-6795-2021 |
September 2021
State of the Climate in 2020 Blunden, J. and T. Boyer, Eds. (2021) State of the Climate in 2020, Bull. Amer. Meteor. Soc., 102 (8), Si–S475. DOI: https://doi.org/10.1175/2021BAMSStateoftheClimate.1 |
Covariation of Airborne Biogenic Tracers (CO2, COS, and CO) Supports Stronger Than Expected Growing Season Photosynthetic Uptake in the Southeastern US Parazoo, N.C., Bowman, K.W., Baier, B.C., Liu, J., Lee, M., Kuai, L., Shiga, Y., Baker, I., Whelan, M.E., Feng, S. and Krol, M., 2021. Covariation of airborne biogenic tracers (CO2, COS, and CO) supports stronger than expected growing season photosynthetic uptake in the southeastern US. Global Biogeochemical Cycles, 35(10), p.e2021GB006956. |
Remote Sensing of Wetland Area Loss and Gain in the Western Barataria Basin (Louisiana, U.S.A.) since Hurricane Katrina Potter, C., 2021. Remote sensing of wetland area loss and gain in the western Barataria Basin (Louisiana, U.S.A.) since Hurricane Katrina. Journal of Coastal Research, 37(5), 953–963. |
Remote sensing and mapping of floating aquatic vegetation in the Sacramento–San Joaquin River Delta Bubenheim, D., Genovese, V., Madsen, J.D. and Hard, E., 2021. Remote sensing and mapping of floating aquatic vegetation in the Sacramento–San Joaquin River Delta. J. Aquat. Plant Manage, 59s, pp.46-54. |
An overview of the Delta Region Areawide Aquatic Weed Project for Improved control of Invasive aquatic weeds in the Sacramento-San Joaquin Delta P.J. Moran, J.D. Madsen, P.D. Pratt, D. L. Bubenheim, E. Hard, T. Jabusch, and R.I. Carruthers, 2021, An overview of the Delta Region Areawide Aquatic Weed Project for Improved control of Invasive aquatic weeds in the Sacramento-San Joaquin Delta, J. Aquat. Plant Manage, 59s, pp.2- 15. |
Bioeconomic modeling of floating aquatic weeds in the Sacramento-San Joaquin River Delta K.M. Jetter, J. Madsen, D. Bubenheim, and J. Dong, 2021, Bioeconomic modeling of floating aquatic weeds in the Sacramento-San Joaquin River Delta, J. Aquat. Plant Manage, 59s, pp.98-106. |
Modeling nitrogen runoff from Sacramento and San Joaquin river basins to Bay Delta Estuary: Current status and ecological implications R. Wang, H. Chen, D. Bubenheim, P., Moran, and M. Zhang, 2021, Modeling nitrogen runoff from Sacramento and San Joaquin river basins to Bay Delta Estuary: Current status and ecological implications, J. Aquat. Plant Manage, 59s, pp.107-111. |
August 2021
Temporal Interpolation of Geostationary Satellite Imagery With Optical Flow T. J. Vandal and R. R. Nemani, “Temporal Interpolation of Geostationary Satellite Imagery With Optical Flow,” in IEEE Transactions on Neural Networks and Learning Systems, doi: 10.1109/TNNLS.2021.3101742. |
Prototyping of LAI and FPAR Retrievals From GOES-16 Advanced Baseline Imager Data Using Global Optimizing Algorithm Chen, Y., Sun, K., Li, W., Chen, C., Li, P., Bai, T., Park, T., Wang, W., Nemani, R. and Myneni, R., 2021. Prototyping of LAI and FPAR Retrievals from GOES-16 Advanced Baseline Imager Data Using Global Optimizing Algorithm. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 14:6937-6950, 2021. DOI: 10.1109/JSTARS.2021.3094647 |
Spatiotemporal Methane Emission from Global Reservoirs Johnson, M. S., Matthews, E., Bastviken, D., Deemer, B., Du, J., & Genovese, V. (2021). Spatiotemporal methane emission from global reservoirs. Journal of Geophysical Research: Biogeosciences, 126, e2021JG006305. https://doi.org/10.1029/2021JG006305. |
Observation and modeling of the historic “Godzilla” African dust intrusion into the Caribbean Basin and the southern US in June 2020 Yu, H., Tan, Q., Zhou, L., Zhou, Y., Bian, H., Chin, M., Ryder, C. L., Levy, R. C., Pradhan, Y., Shi, Y., Song, Q., Zhang, Z., Colarco, P. R., Kim, D., Remer, L. A., Yuan, T., Mayol-Bracero, O., and Holben, B. N.: Observation and modeling of the historic “Godzilla” African dust intrusion into the Caribbean Basin and the southern US in June 2020, Atmos. Chem. Phys., 21, 12359–12383, https://doi.org/10.5194/acp-21-12359-2021, 2021. |
Diagnostics of Convective Transport over the Tropical Western Pacific from Trajectory Analyses Smith, W. P., L. L. Pan, S. B. Honomichl, S. M. Chelpon, R. Ueyama, and L. Pfister (2021). Diagnostics of convective transport over the tropical western Pacific from trajectory analyses, Journal of Geophysical Research – Atmospheres, doi.org/10.1029/2020JD034341. |
July 2021
Biomass Burning and Water Balance Dynamics in the Lake Chad Basin in Africa Black, F.W., Lee, J., Ichoku, C.M., Ellison, L., Gatebe, C.K., Babamaaji, R., Abdollahi, K., San, S. Biomass Burning and Water Balance Dynamics in the Lake Chad Basin in Africa, Earth 2021, 2(2), 340-356. https://doi.org/10.3390/earth2020020 |
Spectral Synthesis for Geostationary Satellite-to-Satellite Translation Vandal, T.J., D. McDuff, W., Wang, K. Duffy, A. Michaelis, and R. R. Nemani, (2021) “Spectral Synthesis for Geostationary Satellite-to-Satellite Translation,” in IEEE Transactions on Geoscience and Remote Sensing. DOI: https://doi.org/10.1109/TGRS.2021.3088686 |
Satellite-Based Drought Reporting on the Navajo Nation A.J.K. McCullum, C., McClellan, B. Daudert, J., Huntington, R. Green, V. Ly, A.R.G. Marley, N.R. Tulley, C., Morton, K.C. Hegewisch, J.T., Abatzoglou, D. McEvoy. Journal of the American Water Resources Association, Online First (Paper No. JAWR-20-0075-P). DOI: https://doi.org/10.1111/1752-1688.12909 |
Emerging satellite observations for diurnal cycling of ecosystem processes J. Xiao, J. B. Fisher, H. Hashimoto, K. Ichii, and N. C. Parazoo, “Emerging satellite observations for diurnal cycling of ecosystem processes”, Nature Plants, 7(6), (2021). DOI: https://doi.org/10.1038/s41477-021-00952-8 |
Exploring the elevated water vapor signal associated with the free tropospheric biomass burning plume over the southeast Atlantic Ocean Pistone, K., Zuidema, P., Wood, R., Diamond, M., da Silva, A. M., Ferrada, G., Saide, P. E., Ueyama, R., Ryoo, J.-M., Pfister, L., Podolske, J., Noone, D., Bennett, R., Stith, E., Carmichael, G., Redemann, J., Flynn, C., LeBlanc, S., Segal-Rozenhaimer, M., and Shinozuka, Y.: Exploring the elevated water vapor signal associated with the free tropospheric biomass burning plume over the southeast Atlantic Ocean, Atmos. Chem. Phys., 21, 9643–9668, https://doi.org/10.5194/acp-21-9643-2021, 2021. |
Airborne and ground-based measurements of aerosol optical depth of freshly emitted anthropogenic plumes in the Athabasca Oil Sands Region Baibakov, K., LeBlanc, S., Ranjbar, K., O’Neill, N. T., Wolde, M., Redemann, J., Pistone, K., Li, S.-M., Liggio, J., Hayden, K., Chan, T. W., Wheeler, M. J., Nichman, L., Flynn, C., and Johnson, R.: Airborne and ground-based measurements of aerosol optical depth of freshly emitted anthropogenic plumes in the Athabasca Oil Sands Region, Atmos. Chem. Phys., 21, 10671–10687, 2021. DOI: 10.5194/acp-21-10671-2021 |
The Coral Reef Sentinels Program: A Mars Shot for Blue Planetary Health Kline, D.I., Dehgan, A., Bunje, P., Selbe, S., Chirayath, V., Pizarro, O., Leray, M., Connolly, S., Bongaerts, P., Treibitz, T. and Levy, O., 2021. The Coral Reef Sentinels Program: A Mars Shot for Blue Planetary Health. Marine Technology Society Journal, 55(3), pp.118-119. DOI: 10.4031/MTSJ.55.3.51 |
The Adaptable 4A Inversion (5AI): description and first XCO2 retrievals from Orbiting Carbon Observatory-2 (OCO-2) observations Dogniaux, M., Crevoisier, C., Armante, R., Capelle, V., Delahaye, T., Cassé, V., Mazière, M.D., Deutscher, N.M., Feist, D.G., Garcia, O.E., Griffith, D.W., Hase, F., Iraci, L.T., Kivi, R., Morino, I., Notholt, J., Pollard, D.F., Roehl, C.M., Shiomi, K., Strong, K., Te, Y., Venazco, V.A., and T. Warneke, 2021. The Adaptable 4A Inversion (5AI): description and first XCO2 retrievals from Orbiting Carbon Observatory-2 (OCO-2) observations. Atmospheric Measurement Techniques, 14(6), pp.4689-4706. DOI: 10.5194/amt-14-4689-2021 |
Large hemispheric difference in nucleation mode aerosol concentrations in the lowermost stratosphere at mid- and high latitudes Williamson, C.J., Kupc, A., Rollins, A., Kazil, J., Froyd, K.D., Ray, E.A., Murphy, D.M., Schill, G.P., Peischl, J., Thompson, C., Bourgeois, I., Ryerson, T.B., Diskin, G.S., DiGangi, J.P., Blake, D.R., Bui, T.V., Dollner, M., Weinzierl, B., and Brock, C.A., 2021. Large hemispheric difference in nucleation mode aerosol concentrations in the lowermost stratosphere at mid-and high latitudes. Atmospheric Chemistry and Physics, 21(11), pp.9065-9088. DOI: 10.5194/acp-21-9065-2021 |
Investigating the Condensation of Benzene (C6H6) in Titan’s South Polar Cloud System with a Combination of Laboratory, Observational, and Modeling Tools Dubois, D., Iraci, L.T., Barth, E.L., Salama, F., Vinatier, S. and Sciamma-O’Brien, E., 2021. Investigating the Condensation of Benzene (C6H6) in Titan’s South Polar Cloud System with a Combination of Laboratory, Observational, and Modeling Tools. The Planetary Science Journal, 2(4), p.121. DOI: 10.3847/PSJ/ac06d5 |
Prototyping of LAI and FPAR Retrievals From GOES-16 Advanced Baseline Imager Data Using Global Optimizing Algorithm Chen, Y., Sun, K., Li, W., Chen, C., Li, P., Bai, T., Park, T., Wang, W., Nemani, R. and Myneni, R., 2021. Prototyping of LAI and FPAR Retrievals from GOES-16 Advanced Baseline Imager Data Using Global Optimizing Algorithm. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 14:6937-6950, 2021. DOI: 10.1109/JSTARS.2021.3094647 |
June 2021
Ammonia Dry Deposition in an Alpine Ecosystem Traced to Agricultural Emission Hotpots Da Pan, Katherine B. Benedict, Levi M. Golston, Rui Wang, Jeffrey L. Collett, Lei Tao, Kang Sun, Xuehui Guo, Jay Ham, Anthony J. Prenni, Bret A. Schichtel, Tomas Mikoviny, Markus Müller, Armin Wisthaler, and Mark A. Zondlo. Environmental Science & Technology, 2021. DOI: https://doi.org/10.1021/acs.est.0c05749 |
Tropospheric NO2 measurements using a three-wavelength optical parametric oscillator differential absorption lidar Su, J., McCormick, M. P., Johnson, M. S., Sullivan, J. T., Newchurch, M. J., Berkoff, T. A., Kuang, S., and Gronoff, G. P.: Tropospheric NO2 measurements using a three-wavelength optical parametric oscillator differential absorption lidar, Atmos. Meas. Tech., 14, 4069–4082, https://doi.org/10.5194/amt-14-4069-2021, 2021. |
GAR Special Report on Drought 2021 United Nations Office for Disaster Risk Reduction (2021), Contributing Author: Rama Nemani. GAR Special Report on Drought 2021. Geneva. ISBN 9789212320274 Link: https://www.undrr.org/publication/gar-special-report-drought-2021 |
Quantum-assisted associative adversarial network: applying quantum annealing in deep learning Max Wilson, Thomas J. Vandal, Tad Hogg & Eleanor G. Rieffel, (2021), Quantum-assisted associative adversarial network: applying quantum annealing in deep learning, Quantum Machine Intelligence 3, 19. DOI: https://doi.org/10.1007/s42484-021-00047-9 |
The Scientific Legacy of NASA’s Operation IceBridge MacGregor, J.A., (…), RoseAnne T. Dominguez, (…), John G. Sonntag, et al.., The scientific legacy of NASA’s Operation IceBridge. Reviews of Geophysics 59(2): e2020RG000712, 2021. DOI: 10.1029/2020RG000712 Link: https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2020RG000712 |
May 2021
Evaluation of crop coefficient and evapotranspiration data for sugar beets from landsat surface reflectances using micrometeorological measurements and weighing lysimetry Wang, T., Melton, F.S., Pôças, I., Johnson, L.F., Thao, T., Post, K., Cassel-Sharmae, F., Evaluation of crop coefficient and evapotranspiration data for sugar beets from landsat surface reflectances using micrometeorological measurements and weighing lysimetry. Agric. Water Management, 244, 106533. DOI: 10.1016/j.agwat.2020.106533 |
The impact of Los Angeles Basin pollution and stratospheric intrusions on the surrounding San Gabriel Mountains as seen by surface measurements, lidar, and numerical models Chouza, F., Leblanc, T., Brewer, M., Wang, P., Piazzolla, S., Pfister, G., Kumar, R., Drews, C., Tilmes, S., Emmons, L., and Johnson, M. : The impact of Los Angeles Basin pollution and stratospheric intrusions on the surrounding San Gabriel Mountains as seen by surface measurements, lidar, and numerical models, Atmos. Chem. Phys., 21, 6129–6153, https://doi.org/10.5194/acp-21-6129-2021 , 2021. |
The Impact of Tropical Tropopause Cooling on Sahelian Extreme Deep Convection Kodera, K., N. Eguchi, R. Ueyama, B. M. Funatsu, M. Gaetani, and C. M. Taylor, 2021: The impact of tropical tropopause cooling on Sahelian extreme deep convection. J. Meteor. Soc. Japan, 99, https://doi.org/10.2151/jmsj.2021-055. |
Sensitivity of 21st-century projected ocean new production changes to idealized biogeochemical model structure Brett, G. J., Whitt, D. B., Long, M. C., Bryan, F., Feloy, K., and Richards, K. J.: Sensitivity of 21st-century projected ocean new production changes to idealized biogeochemical model structure, Biogeosciences. 2021. https://doi.org/10.5194/bg-2020-479 |
April 2021
Spatiotemporal heterogeneity of aerosol and cloud properties over the southeast Atlantic: An observational analysis Chang, I., Gao, L., Burton, S.P., Chen, H., Diamond, M.S., Ferrare, R.A., Flynn, C.J., Kacenelenbogen, M., LeBlanc, S.E., Meyer, K.G. Pistone, K., Schmidt, S., Segal-Rozenhaimer, M., Shinozuka, Y., Wood, R. Zuidema, P., Redemann, J., Christopher, S.A. Spatiotemporal heterogeneity of aerosol and cloud properties over the southeast Atlantic: An observational analysis. Geophysical Research Letters, p.e2020GL091469. DOI: https://doi.org/10.1029/2020GL091469 |
Vicarious Calibration of eMAS, AirMSPI, and AVIRIS Sensors During FIREX-AQ Bruegge, C.J., Arnold, G.T., Czapla-Myers, J., Dominguez, R., Helmlinger, M.C., Thompson, D.R., Wenny, B.N.: Vicarious Calibration of eMAS, AirMSPI, and AVIRIS Sensors During FIREX-AQ. IEEE Transactions on Geoscience and Remote Sensing, doi: 10.1109/TGRS.2021.3066997. Link: https://ieeexplore.ieee.org/document/9395177 |
The impact of climate change on ocean submesoscale activity Richards, K.J., Whitt, D.B., Brett, G., Bryan, F.O., Feloy, K., & Long, M.C. (2021). The impact of climate change on ocean submesoscale activity. Journal of Geophysical Research: Oceans, 126, e2020JC016750. DOI: https://doi.org/10.1029/2020JC016750 |
Aerosol characteristics from earth observation systems: A comprehensive investigation over South Asia (2000–2019) Mhawish, A., Sorek-Hamer, M., Chatfield, R., Banerjee, T., Bilal, M., Kumar, M., Sarangi, C., Franklin, M., Chau, K., Garay, M., Kalashnikova, O.: Aerosol characteristics from earth observation systems: A comprehensive investigation over South Asia (2000–2019). Remote Sensing of Environment 259, 15 June 2021, 112410. DOI: 10.1016/j.rse.2021.112410 |
Performance stability of the MODIS and VIIRS LAI algorithms inferred from analysis of long time series of products Kai Yan, Jiabin Pu, Taejin Park, Baodong Xu, Yelu Zeng, Guangjian Yan, Marie Weiss, Yuri Knyazikhin, Ranga B. Myneni, Performance stability of the MODIS and VIIRS LAI algorithms inferred from analysis of long time series of products, Remote Sensing of Environment, Volume 260, 2021, 112438, ISSN 0034-4257. Link: https://doi.org/10.1016/j.rse.2021.112438 |
Plant phenology evaluation of CRESCENDO land surface models – Part 1: Start and end of the growing season Peano, D., Hemming, D., Materia, S., Delire, C., Fan, Y., Joetzjer, E., Lee, H., Nabel, J. E. M. S., Park, T., Peylin, P., Wårlind, D., Wiltshire, A., and Zaehle, S.: Plant phenology evaluation of CRESCENDO land surface models – Part 1: Start and end of the growing season, Biogeosciences, 18, 2405–2428,2021. Link: https://doi.org/10.5194/bg-18-2405-2021 |
Prediction of crop coefficients from fraction of ground cover and height: Practical application to vegetable, field and fruit crops with focus on parameterization Pereira, L.S.,.Paredes, P., Melton, F., Johnson, L., Motaa, M., Wang, T., Prediction of crop coefficients from fraction of ground cover and height: Practical application to vegetable, field and fruit crops with focus on parameterization. Agricultural Water Management 252, 106663. |
NeMO-Net–Gamifying 3D Labeling of Multi-Modal Reference Datasets to Support Automated Marine Habitat Mapping Van Den Bergh, J., Chirayath, V., Li, A., Torres-Pérez, J.L. and Segal-Rozenhaimer, M., 2021. NeMO-Net–Gamifying 3D Labeling of Multi-Modal Reference Datasets to Support Automated Marine Habitat Mapping. Frontiers in Marine Science, 8, p.347. https://doi.org/10.3389/fmars.2021.645408 |
March 2021
Off-equatorial deep-cycle turbulence forced by Tropical Instability Waves in the equatorial Pacific Cherian, D., D. Whitt, R. Holmes, R.-C. Lien, S. Bachman, and W. Large (2021) Off-equatorial deep cycle turbulence forced by Tropical Instability Waves in the equatorial Pacific. J. Phys. Oceanogr. (in press). DOI: https://doi.org/10.1175/JPO-D-20-0229.1 |
Temporal and spatial variations of aerosol optical properties over the Korean peninsula during KORUS-AQ Choi, Y., Ghim, Y. S., Rozenhaimer, M. S., Redemann, J., LeBlanc, S. E., J., C. F., Johnson, R. J., Lee, Y., Lee, T., Park, T., Schwarz, J. P., Lamb, K. D. and Perring, A. E.: Temporal and spatial variations of aerosol optical properties over the Korean peninsula during KORUS-AQ, Atmos. Environ., 118301,doi:10.1016/j.atmosenv.2021.118301, 2021. DOI: https://doi.org/10.1016/j.atmosenv.2021.118301 |
A model to illustrate the potential pairing of animal biotelemetry with individual-based modeling Brosnan, I.B., & Welch, D.W.: A model to illustrate the potential pairing of animal biotelemetry with individual-based modeling. Animal Biotelemetry 8:36 (2020). Link: https://link.springer.com/article/10.1186/s40317-020-00221-z |
Semantic Segmentation of High Resolution Satellite Imagery using Generative Adversarial Networks with Progressive Growing Edward Collier, Supratik Mukhopadhyay, Kate Duffy, Sangram Ganguly, Geri Madanguit, Subodh Kalia, Gayaka Shreekant, Ramakrishna Nemani, Andrew Michaelis, Shuang Li & Auroop Ganguly (2021), Semantic Segmentation of High Resolution Satellite Imagery using Generative Adversarial Networks with Progressive Growing, Remote Sensing Letters, 12:5, 439-448. DOI: https://doi.org/10.1080/2150704X.2021.1895444 |
Impacts of the San Francisco Bay Area shelter-in-place during the COVID-19 pandemic on urban heat fluxes Potter, C., & Alexander, O. (2021). Impacts of the San Francisco Bay Area shelter-in-place during the COVID-19 pandemic on urban heat fluxes. Urban Climate, 100828. DOI: https://doi.org/10.1016/j.uclim.2021.100828 |
February 2021
New generation geostationary satellite observations support seasonality in greenness of the Amazon evergreen forests Hashimoto, H.; Wang, W.; Dungan, J.L.; Li, S.; Michaelis, A.R.; Takenaka, H.; Higuchi, A.; Myneni, R.B.; Nemani, R.R. New generation geostationary satellite observations support seasonality in greenness of the Amazon evergreen forests. Nature Communications 12, 684 (2021). DOI: https://doi.org/10.1038/s41467-021-20994-y |
Empirically derived parameterizations of the direct aerosol radiative effect based on ORACLES aircraft observations Cochrane, S. P., Schmidt, K. S., Chen, H., Pilewskie, P., Kittelman, S., Redemann, J., LeBlanc, S., Pistone, K., Kacenelenbogen, M., Segal Rozenhaimer, M., Shinozuka, Y., Flynn, C., Dobracki, A., Zuidema, P., Howell, S., Freitag, S., and Doherty, S.: Empirically derived parameterizations of the direct aerosol radiative effect based on ORACLES aircraft observations, Atmos. Meas. Tech., 14, 567–593, 2021. DOI: https://doi.org/10.5194/amt-14-567-2021 |
Long-range transport of Siberian biomass burning emissions to North America during FIREX-AQ Johnson, M. S., Strawbridge, K., Knowland, K. E., Keller, C., and Travis., M.: Long-range transport of Siberian biomass burning emissions to North America during FIREX-AQ, Atmospheric Environment, in press (2020). DOI: https://doi.org/10.1016/j.atmosenv.2021.118241 |
An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin. Redemann, J., Wood, R., Zuidema, P., Doherty, S. J., Luna, B., LeBlanc, S. E., Diamond, M. S., Shinozuka, Y., Chang, I. Y., Ueyama, R., Pfister, L., Ryoo, J.-M., Dobracki, A. N., da Silva, A. M., Longo, K. M., Kacenelenbogen, M. S., Flynn, C. J., Pistone, K., Knox, N. M., Piketh, S. J., Haywood, J. M., Formenti, P., Mallet, M., Stier, P., Ackerman, A. S., Bauer, S. E., Fridlind, A. M., Carmichael, G. R., Saide, P. E., Ferrada, G. A., Howell, S. G., Freitag, S., Cairns, B., Holben, B. N., Knobelspiesse, K. D., Tanelli, S., L’Ecuyer, T. S., Dzambo, A. M., Sy, O. O., McFarquhar, G. M., Poellot, M. R., Gupta, S., O’Brien, J. R., Nenes, A., Kacarab, M., Wong, J. P. S., Small-Griswold, J. D., Thornhill, K. L., Noone, D., Podolske, J. R., Schmidt, K. S., Pilewskie, P., Chen, H., Cochrane, S. P., Sedlacek, A. J., Lang, T. J., Stith, E., Segal-Rozenhaimer, M., Ferrare, R. A., Burton, S. P., Hostetler, C. A., Diner, D. J., Seidel, F. C., Platnick, S. E., Myers, J. S., Meyer, K. G., Spangenberg, D. A., Maring, H., and Gao, L.: An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin, Atmos. Chem. Phys., 21, 1507–1563, 2021. DOI: https://doi.org/10.5194/acp-21-1507-2021 |
The Venus Life Equation Noam R. Izenberg, Diana M. Gentry, David J. Smith, Martha S. Gilmore, David H. Grinspoon, Mark A. Bullock, Penelope J. Boston, and Grzegorz P. Słowik. Astrobiology.(In press, 2021). DOI: https://doi.org/10.1089/ast.2020.2326 |
Improving Estimates of PM2.5 Concentration and Chemical Composition by Application of High Spectral Resolution Lidar (HSRL) and Creating Aerosol Types from Chemistry (CATCH) Algorithm Meskhidze, N., Sutherland, B., Ling, X., Dawson, K., Johnson, M. S., Henderson, B., Hostetler, C. A., and Ferrare. R. A. Atmospheric Environment, in press (2021). DOI: https://doi.org/10.1016/j.atmosenv.2021.118250 |
NASA’s surface biology and geology designated observable: A perspective on surface imaging algorithms Cawse-Nicholson, K., P.A. Townsend, D. Schimel, A.M. Assiri, … C.K. Gatebe, D. Griffith, L. Guild, F.M. Schwander, J.L. Torres-Perez, K.R. Turpie, … the SBG Algorithms Working Group: NASA’s surface biology and geology designated observable: A perspective on surface imaging algorithms. Remote Sensing of Environment 257, May 2021, 112349. |
A new measurement approach for validating satellite-based above-cloud aerosol optical depth Gatebe, C. K., Jethva, H., Gautam, R., Poudyal, R., and Várnai, T.: A new measurement approach for validating satellite-based above-cloud aerosol optical depth, Atmos. Meas. Tech., 14, 1405–1423. DOI: https://doi.org/10.5194/amt-14-1405-2021 |
Space Biology Research and Biosensor Technologies: Past, Present, and Future Kanapskyte, A.; Hawkins, E.M.; Liddell, L.C.; Bhardwaj, S.R.; Gentry, D.; Santa Maria, S.R. Space Biology Research and Biosensor Technologies: Past, Present, and Future. Biosensors 2021, 11, 38. DOI: https://doi.org/10.3390/bios11020038 |
BioSentinel: A Biofluidic Nanosatellite Monitoring Microbial Growth and Activity in Deep Space Padgen, M. R., Liddell, L.C., Bhardwaj, S.R., Gentry, D., Marina, D., Boone, T., Tan, M., Ellingson, L., Rademacher, A., Benton, J., Schooley, A., Mousavi, A., Friedericks, C., Hanel, R.P., Ricco, A.J., Bhattacharya, S., Santa Maria, S.R.: BioSentinel: A Biofluidic Nanosatellite Monitoring Microbial Growth and Activity in Deep Space. Astrobiology (2021, in press). DOI: https://doi.org/10.1089/ast.2020.2305 |
January 2021
Emissions relationships in western forest fire plumes – Part 1: Reducing the effect of mixing errors on emission factors Chatfield, R. B., Andreae, M. O., ARCTAS Science Team, and SEAC4RS Science Team: Emissions relationships in western forest fire plumes – Part 1: Reducing the effect of mixing errors on emission factors, Atmos. Meas. Tech., 13, 7069–7096, 2020. |
Evaluation of single-footprint AIRS CH4 profile retrieval uncertainties using aircraft profile measurements Kulawik, S. S., Worden, J. R., Payne, V. H., Fu, D., Wofsy, S. C., McKain, K., Sweeney, C., Daube Jr., B. C., Lipton, A., Polonsky, I., He, Y., Cady-Pereira, K. E., Dlugokencky, E. J., Jacob, D. J., and Yin, Y.: Evaluation of single-footprint AIRS CH4 profile retrieval uncertainties using aircraft profile measurements, Atmos. Meas. Tech., 14, 335–354, DOI:10.5194/amt-14-335-2021, 2021. |
Validation of IASI satellite ammonia observations at the pixel scale using in‐situ vertical profiles Guo, X., …, Levi M. Golston, et al. (2021). Validation of IASI satellite ammonia observations at the pixel scale using in‐situ vertical profiles. Journal of Geophysical Research: Atmospheres, 126, e2020JD033475. DOI:10.1029/2020JD033475 |
Emissions relationships in western forest fire plumes – Part 1: Reducing the effect of mixing errors on emission factors Chatfield, R. B., Andreae, M. O., ARCTAS Science Team, and SEAC4RS Science Team: Emissions relationships in western forest fire plumes – Part 1: Reducing the effect of mixing errors on emission factors, Atmos. Meas. Tech., 13, 7069–7096, DOI:10.5194/amt-13-7069-2020, 2020. |