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Publications Citing Cryosphere Data
List of peer-reviewed publications that cite using Cryosphere data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
|---|---|---|---|---|
| Brief communication: Bed mapping of southern Greenland outlet glaciers using helicopter-borne ground penetrating radar (AIRETH) | Santin, Ilaria, Horgan, Huw J., Moser, Raphael, Bjrnholt Karlsson, Nanna, Nick, Faezeh M., Vieli, Andreas, Rutishauser, Anja, Maurer, Hansruedi, Farinotti, Daniel | Glacier Elevation/Ice Sheet Elevation, Glacier Thickness/Ice Sheet Thickness | ||
| Causal Drivers of Dynamics in Three Major Marine-Terminating Glaciers: A Liang-Kleeman Information Flow Approach | Xie, Wenxuan, Zhao, Liyun, Wolovick, Michael, Moore, John C. | Bathymetry, Bed Elevation, Glacier/Ice Sheet Thickness, Terrain Elevation, Ice Velocity | ||
| Climate-driven dust intensification over the Mongolian Gobi in early spring | Oh, Sang-Seok, Bai, Husile, Lee, Hyo-Jung, Jo, Hyun-Young, Kim, Cheol-Hee | Snow Cover | ||
| Assessing the Likelihood of Unprecedented Antarctic Heat in the Current Climate | Suitters, Charlie C., Screen, James A., Catto, Jennifer L., Jones, Julie M., Li, Sihan, Orr, Andrew, Scaife, Adam A., Tang, Haosu | Basins, Coastline, Grounding Line, Ice Shelves | ||
| Assessing the potential of deep learning-based dam inflow forecasting in a heavy snowfall region of Japan using reanalysis and satellite-derived snow cover data | Yanagihara, Hayata, Arai, Ryosuke | Snow Cover | ||
| Automated workflows for airborne lidar and photogrammetry snow depth analyses | Adebisi, Naheem, Meyer, Joachim, Wilder, Brenton A., Marshall, Hans-Peter, ONeel, Shad R., Hoppinen, Zachary, Ciafone, Siobhan M., Filiano, Dominic L. | Snow Depth | ||
| Detection and attribution of the role of anthropogenic climate change in industrial-era retreat of Pine Island Glacier | Bradley, Alexander T., Bett, David T., Williams, C. Rosie, Arthern, Robert J., Holland, Paul R., Byrne, James, Edwards, Tamsin L., Adhikari, Mira | Ice Velocity | ||
| Determining the Character of Subglacial Sediments in the IceBedrock Interface Zone of Antarctica Using HorizontaltoVertical Spectral Ratios (HVSRs) of Seismic Ambient Noise | Kelly, I. D., Reading, A. M., Stal, T., Kulessa, B., GarciaJerez, A., PinaFlores, J., Paolucci, E., Tanzini, A., Turner, R. J., Magyar, J. C., Bassom, A. P. | Bathymetry, Bed Elevation, Firn Air Content, Glacier/Ice Sheet Thickness, Terrain Elevation, Basins, Coastline, Grounding Line, Ice Shelves | ||
| Differences and causes of interannual variations of global mean sea level between two El Nino events in 20142016 and 20232024 | Jin, Zehui, Zhong, Min, Yang, Meng, Feng, Wei | Terrestrial Water Storage, Ground Water, Glacier Mass Balance/Ice Sheet Mass Balance | ||
| Hydrologically guided transfer learning for ungauged basin prediction: | Li, Jiyu, Ran, Qihua, Ye, Sheng | Reforestation, Terrestrial Ecosystems, Permafrost, Rock Glaciers, Glacier Elevation/Ice Sheet Elevation, Glacier Motion/Ice Sheet Motion, Glacier Thickness/Ice Sheet Thickness, Glacier Topography/Ice Sheet Topography, Glaciers, Ice Sheets, Icebergs, Ice Deformation, Ice Depth/Thickness, Ice Edges, Ice Extent, Ice Floes, Ice Growth/Melt, Ice Roughness, Ice Temperature, Ice Types, Icebergs, Leads, Pack Ice, Polynyas, Reflectance, Sea Ice Motion, Ice Extent, Ice Growth/Melt, Ice Motion, Ice Velocity, Lake Ice, Permafrost, River Ice, Snow Cover, Landslides, Aeolian Landforms, Coastal Landforms, Fluvial Landforms, Glacial Landforms, Karst Landforms, Tectonic Landforms, Land Use/Land Cover Classification, Landscape Ecology, Landscape Patterns, Landscape Processes, Reforestation, Surface Roughness, Terrain Elevation, Topographic Effects, Barrier Islands, Beaches, Deltas, Dunes, Estuaries, Fjords, Inlets, Lagoons, Mangroves, Marshes, Rocky Coasts, Shorelines, Wind Waves, Surface Winds, Ice Deformation, Ice Depth/Thickness, Ice Edges, Ice Extent, Ice Floes, Ice Roughness, Ice Types, Icebergs, Leads, Pack Ice, Polynyas, Sea Ice Motion, Glacial Landforms, Caldera, Cinder Cone, Faults, Folds, Geyser, Graben, Horst, Lava Dome, Lava Plain, Maar, Mountains, Plateau, Ridge, Rift Valley, Tuya, Volcano, Tectonic Landforms, Earthquakes, Plate Tectonics, Volcanic Activity, Glacier Elevation/Ice Sheet Elevation, Glacier Motion/Ice Sheet Motion, Glacier Topography/Ice Sheet Topography, Glaciers, Ice Sheets, Icebergs, Ice Extent, Ice Growth/Melt, Ice Motion, Ice Velocity, Lake Ice, Permafrost, River Ice, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | ||
| Ice thickness and subglacial topography of Swedish reference glaciers | Wang, Zhuo, Ross, Neil, Frank, Thomas, Barnett, Jamie, Santin, Ilaria, Houssais, Martin, Dahlkvist, Johanna, Kirchner, Nina | Ice Velocity | ||
| Ice-sheet hydro-fracture not advanced inland by lower-elevation lake drainages in Kalaallit Nunaat | Stevens, Laura A., Nettles, Meredith, Larochelle, Stacy, Okal, Marianne, Falconer, Emily, Turner, Natalie, Rines, Joshua, Lai, Ching-Yao, Lu, George | Bathymetry, Bed Elevation, Glacier/Ice Sheet Thickness, Terrain Elevation, Radar Backscatter, Ice Velocity | ||
| Improved workflow for customized ICESat-2 ATL06 elevations captures seasonal mountain snow depths at sub-kilometer scale | Zikan, Karina, Enderlin, Ellyn M., Marshall, Hans-Peter, O'Neel, Shad | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Digital Elevation/Terrain Model (DEM), Glacier Elevation/Ice Sheet Elevation, Digital Surface Model (DSM), Snow Depth, Vegetation Height | ||
| Coastal nutrient retrieval using multi-dimensional synergistic MSI/OLCI data with a group-specific feature fusion neural network | Huang, Kai, Fan, Jianchao, Ma, Yujuan | Heat Flux, Air Temperature, Skin Temperature, Specific Humidity, Water Vapor, Precipitation Rate, Snow/Ice, Evaporation, Latent Heat Flux, Latent Heat Flux, Sensible Heat Flux, Diffusion, Surface Winds, Wind Speed, U/V Wind Components, Wind Stress, Wind Stress, Surface Roughness, Planetary Boundary Layer Height, Ice Fraction | ||
| Seasonal Ice Dynamics Control the Timing of Crevasse Drainage at a FastFlowing Outlet Glacier | Chudley, T. R., Stokes, C. R., Lea, J. M., Winterbottom, T., Law, R., Clason, C. C., Wytiahlowsky, H. E., Dechow, J. L. | Ice Velocity, Land Ice/Ocean Classification | ||
| Sediment transport by Greenland's icebergs | Pierce, Ethan, Overeem, Irina, Hasholt, Bent | Ice Velocity, Bathymetry, Bed Elevation, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| Ocean Mesoscale Processes Heat Atmosphere Over the Western Boundary | Wang, Zhiqiao, Jing, Zhao, Wu, Lixin | Heat Flux, Heat Flux, Heat Flux, Heat Flux, Longwave Radiation, Longwave Radiation, Shortwave Radiation, Shortwave Radiation, Water Vapor Tendency, Water Vapor Flux, Cloud Dynamics, Cloud Microphysics, Snow/Ice, Precipitation, Specific Humidity, Ice Fraction, Skin Temperature, Sea Surface Skin Temperature, Skin Temperature | ||
| Regional Differences in Sentinel-3 Radar Backscatter over Greenland and its Impact on Ice Sheet Altimetry Applications | Rose, Stine Kildegaard, Srensen, Louise Sandberg, Scanlan, Kirk M., Aublanc, Jeremie, Catapano, Filomena, Bella, Alessandro Di, Femenias, Pierre, Simonsen, Sebastian B. | Glacier Elevation/Ice Sheet Elevation | ||
| Radar Specularity Content Indicates a Strong Geothermal Heat Flow Gradient in Antarctica's South Pole Basin | Kerr, M., Young, D. A., Yan, S., Pierce, C. | Bathymetry, Bed Elevation, Firn Air Content, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| Recent Observations of Thwaites Glacier, West Antarctica Are Consistent With High Rates of Loss in Next 50 Years | Goldberg, Daniel N., Morlighem, Mathieu, Gourmelen, Noel | Ice Velocity | ||
| The Multi-University Consortium for Advanced Data Assimilation Research and Education (CADRE) | Wang, Xuguang, Van Leeuwen, Peter Jan, Poterjoy, Jonathan, Stensrud, David J., Greybush, Steven J., Zhang, Yunji, Santer, Henry, Wang, Yongming, Pu, Zhaoxia, Chen, Xingchao, Stouffer, Braedon C., Chiao, Sen, Ide, Kayo, Lu, Cheng-Hsuan, Johnson, Aaron, Liu, Chengsi, Gasperoni, Nicholas, Yang, Yue, Kim, Jong, Kleist, Daryl, Frolov, Sergey, Carr, Frederick | Sea Ice Concentration | ||
| The ocean model for E3SM global applications: Omega version 0.1. 0a new high-performance computing code for exascale architectures | Petersen, Mark R., Asay-Davis, Xylar S., Barthel, Alice M., Begeman, Carolyn Branecky, Bishnu, Siddhartha, Brus, Steven R., Jones, Philip W., Kang, Hyun-Gyu, Kim, Youngsung, Mametjanov, Azamat, O'Neill, Brian J., Overfelt, James R., Ringel, Kieran K., Smith, Katherine M., Sreepathi, Sarat, Van Roekel, Luke P., Waruszewski, Maciej | Bathymetry, Bed Elevation, Firn Air Content, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| The potential of marine ice cliff instability for Amundsen Sea glaciers revisited | Sun, Sainan, Gudmundsson, Gudmundur Hilmar | Ice Depth/Thickness, Ice Extent, Ice Velocity | ||
| The importance of initial conditions in seasonal predictions of Antarctic sea ice | Campitelli, Elio, Purich, Ariaan, Arblaster, Julie, Lim, Eun-Pa, Wheeler, Matthew C., Reid, Phillip | Sea Ice Concentration | ||
| The Importance of NonCO2 Greenhouse Gases to Arctic Warming and SeaIce Loss | Liang, YuChiao, Polvani, Lorenzo M., Previdi, Michael, Dong, Yue, Wu, YouTing, England, Mark R., Griffith, Stephen M. | Sea Ice Concentration |