We are in the process of migrating all NASA Earth science data sites into Earthdata from now until end of 2026. Not all NASA Earth science data and resources will appear here until then. Thank you for your patience as we make this transition.
Read about the Web Unification Project
Publications
Access publications citing NASA Earth science data.
Filters
| Title | Year Sort ascending | Author | Topic | Dataset |
|---|---|---|---|---|
| Long-term increases in pathogen seroprevalence in polar bears (Ursus maritimus) influenced by climate change | Pilfold, Nicholas W., Richardson, Evan S., Ellis, John, Jenkins, Emily, Scandrett, W. Brad, HernandezOrtiz, Adrian, Buhler, Kayla, McGeachy, David, AlAdhami, Batol, Konecsni, Kelly, Lobanov, Vladislav A., Owen, Megan A., Rideout, Bruce, Lunn, Nicholas J. | Sea Ice Concentration | ||
| Long-term variation in polar bear body condition and maternal investment | Atwood, Todd C., Rode, Karyn D., Douglas, David C., Simac, Kristin, Pagano, Anthony M., Bromaghin, Jeffrey F. | Sea Ice Concentration | ||
| Low-Volatility Vapors and New Particle Formation Over the Southern Ocean | Baccarini, Andrea, Dommen, Josef, Lehtipalo, Katrianne, Henning, Silvia, Modini, Robin L., GyselBeer, Martin, Baltensperger, Urs, Schmale, Julia | Sea Ice Concentration | ||
| Land deformation and sinkhole occurrence in response to the fluctuations of groundwater storage: an integrated assessment of GRACE gravity measurements, ICESat ... | Khorrami, Behnam, Arik, Fetullah, Gunduz, Orhan | Terrain Elevation, Vegetation Height, Reflectance | ||
| Light pollution affects West Nile virus exposure risk across Florida | Kernbach, Meredith E., Martin, Lynn B., Unnasch, Thomas R., Hall, Richard J., Jiang, Rays H. Y., Francis, Clinton D. | Soil Moisture/Water Content | ||
| Limited impact of climate forcing products on future glacier evolution in Scandinavia and Iceland | Compagno, Loris, Zekollari, Harry, Huss, Matthias, Farinotti, Daniel | Ice Velocity | ||
| Improved daily SMAP satellite soil moisture prediction over China using deep learning model with transfer learning | Li, Qingliang, Wang, Ziyu, Shangguan, Wei, Li, Lu, Yao, Yifei, Yu, Fanhua | Surface Soil Moisture | ||
| Improvements of the daily optimum interpolation sea surface temperature (DOISST) version 2.1 | Huang, Boyin, Liu, Chunying, Banzon, Viva, Freeman, Eric, Graham, Garrett, Hankins, Bill, Smith, Tom, Zhang, Huai-Min | Sea Ice Concentration | ||
| Improving CyGNSS-Based Land Remote Sensing: Track-Wise Data Calibration | Yan, Qingyun, Hu, Ting, Jin, Shuanggen, Huang, Weimin, Jia, Yan, Chen, Tiexi, Wang, Jian | Brightness Temperature, Soil Moisture/Water Content | ||
| Improving fractional snow cover retrieval from passive microwave data using a radiative transfer model and machine learning method | Xiao, Xiongxin, He, Tao, Liang, Shunlin, Zhao, Tianjie | Brightness Temperature | ||
| ICESat-2 Meltwater Depth Estimates: Application to Surface Melt on Amery | Fricker, Helen Amanda, Arndt, Philipp, Brunt, Kelly M., Datta, Rajashree Tri, Fair, Zachary, Jasinski, Michael F., Kingslake, Jonathan, Magruder, Lori A., Moussavi, Mahsa, Pope, Allen, Spergel, Julian J., Stoll, Jeremy D., Wouters, Bert | Terrain Elevation | ||
| ICESat2 Constraint Analysis and Monitoring System (CAMS) | Rebold, T. W., Luthcke, S. B., Pennington, T. A., Syed, A., Beall, J. L., Sabaka, T. J. | Terrain Elevation, Sensor Characteristics | ||
| ICESat2 early mission synopsis and observatory performance | Magruder, Lori, Neumann, Thomas, Kurtz, Nathan | Terrain Elevation, Sensor Characteristics | ||
| ICESat2 elevation retrievals in support of satellitederived bathymetry for global science applications | Babbel, Benjamin J., Parrish, Christopher E., Magruder, Lori A. | Terrain Elevation | ||
| ICESat2 pointing calibration and geolocation performance | Luthcke, S. B., Thomas, T. C., Pennington, T. A., Rebold, T. W., Nicholas, J. B., Rowlands, D. D., Gardner, A. S., Bae, S. | Terrain Elevation, Sensor Characteristics | ||
| ICESat2 Precision Orbit Determination | Thomas, T. C., Luthcke, S. B., Pennington, T. A., Nicholas, J. B., Rowlands, D. D. | Sensor Characteristics | ||
| Imminent calving accelerated by increased instability of the Brunt Ice Shelf, in response to climate warming | Cheng, Yuan, Xia, Menglian, Qiao, Gang, Lv, Da, Li, Yanjun, Hai, Gang | Ice Velocity | ||
| Impact of channel selection on SST retrievals from passive microwave observations | Nielsen-Englyst, Pia, Hyer, Jacob L., Alerskans, Emy, Pedersen, Leif Toudal, Donlon, Craig | Brightness Temperature, Microwave Imagery | ||
| CryoSat-2 Significant Wave Height in Polar Oceans Derived Using a | Heorton, Harold, Tsamados, Michel, Armitage, Thomas, Ridout, Andy, Landy, Jack | Sea Ice Concentration | ||
| Data-Driven Inference of the Mechanics of Slip Along Glacier Beds Using | Riel, B., Minchew, B., Bischoff, T. | Ice Velocity | ||
| Detecting and mapping irrigated areas in a Mediterranean environment by using remote sensing soil moisture and a land surface model | Dari, Jacopo, Quintana-Segui, Pere, Escorihuela, Maria Jose, Stefan, Vivien, Brocca, Luca, Morbidelli, Renato | Brightness Temperature, Soil Moisture/Water Content | ||
| Detection and Height Measurement of Tenuous Clouds and Blowing Snow in ICESat2 ATLAS Data | Herzfeld, Ute, Hayes, Adam, Palm, Stephen, Hancock, David, Vaughan, Mark, Barbieri, Kristine | Lidar Backscatter, Cloud Properties | ||
| Assessment and Error Analysis of Satellite Soil Moisture Products Over the Third Pole | Zeng, Jiangyuan, Shi, Pengfei, Chen, Kun-Shan, Ma, Hongliang, Bi, Haiyun, Cui, Chenyang | Surface Soil Moisture | ||
| Assessment and ranking of climate models in Arctic Sea ice cover simulation: From CMIP5 to CMIP6 | Shen, Zili, Duan, Anmin, Li, Dongliang, Li, Jinxiao | Sea Ice Concentration | ||
| Assessment of ICESat-2 for the recovery of ocean topography | Yu, Yao, Sandwell, David T, Gille, Sarah T, Villas Boas, Ana Beatriz | Terrain Elevation, Sea Surface Height |