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Publications Citing NSIDC DAAC Data
List of peer-reviewed publications that cite using NSIDC DAAC data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
|---|---|---|---|---|
| Estimating the Water Level and Bathymetry of Lake Yahuarcocha, Ecuador Using ICESat-2/ATL13 Satellite Laser Altimetry, System Dynamics Model, and Machine ... | Fernando, Garrido, Pedro, Granda | Terrain Elevation, Vegetation Height, Surface Water Processes/Measurements, Surface Water Features | ||
| Comprehensive Radar Mapping of Malaspina Glacier (Sit'Tlein), AlaskaThe World's Largest Piedmont GlacierReveals Potential for Instability | Tober, B. S., Holt, J. W., Christoffersen, M. S., Truffer, M., Larsen, C. F., Brinkerhoff, D. J., Mooneyham, S. A. | Ice Velocity, Glacier Topography/Ice Sheet Topography, RADAR IMAGERY | ||
| Comprehensive representation of tropical-extratropical teleconnections obstructed by tropical Pacific convection biases in CMIP6 | Feng, Xiaofang, Ding, Qinghua, Wu, Liguang, Jones, Charles, Wang, Huijun, Bushuk, Mitchell, Topal, Daniel | Sea Ice Concentration | ||
| Constraining the First Year of IceFree Arctic: Importance of Regional Perspective | Paik, Seungmok, Kim, Daehyun, An, SoonIl, Ham, YooGeun | Sea Ice Concentration | ||
| Constraints on subglacial melt fluxes from observations of active subglacial lake recharge | Malczyk, George, Gourmelen, Noel, Werder, Mauro, Wearing, Martin, Goldberg, Dan | Ice Velocity | ||
| Continuously Updated Digital Elevation Models (CUDEMs) to Support | Amante, Christopher J., Love, Matthew, Carignan, Kelly, Sutherland, Michael G., MacFerrin, Michael, Lim, Elliot | Terrain Elevation, Vegetation Height | ||
| Cook Ice Shelf and Ninnis Glacier Tongue Bathymetry From Inversion of | Constantino, Renata R., Tinto, Kirsty J. | Ice Velocity, Gravity | ||
| Distribution of modern benthic foraminiferal assemblages across the Northeast Greenland continental shelf | Davies, Joanna, Lloyd, Jeremy, Pearce, Christof, Seidenkrantz, Marit-Solveig | Sea Ice Concentration | ||
| DNNBased Retrieval of Arctic Sea Ice Concentration From GNSSR and Its Effects on the SynopticScale Forecasting as Supplementary Observation Source | Yang, Lu, Guo, Bofeng, Zhang, Zhaoyi, Zhang, Xuefeng | Sea Ice Concentration, Brightness Temperature, Sea Ice Motion, Snow Depth | ||
| Divergent response of crops and natural vegetation to the record-breaking extreme precipitation event in 2020 modulated by topography | Chen, Jiuyi, Qiu, Bo, Guo, Weidong, Li, Lingfeng, Miao, Xin | Land Use/Land Cover Classification, Brightness Temperature, Surface Soil Moisture | ||
| Diversity and seasonal development of large zooplankton along physical gradients in the Arctic Barents Sea | Van Engeland, Tom, Bagien, Espen, Wold, Anette, Cannaby, Heather A., Majaneva, Sanna, Vader, Anna, Rnning, Jon, Handegard, Nils Olav, Dalpadado, Padmini, Ingvaldsen, Randi B. | Sea Ice Concentration | ||
| Daily Sea Ice Concentration Product over Polar Regions Based on | Wu, Suhui, Shi, Lijian, Zou, Bin, Zeng, Tao, Dong, Zhaoqing, Lu, Dunwang | Sea Ice Concentration | ||
| Damage detection on antarctic ice shelves using the normalised radon transform | Izeboud, Maaike, Lhermitte, Stef | Ice Velocity | ||
| Deep Learning of Systematic Sea Ice Model Errors From Data Assimilation Increments | Gregory, William, Bushuk, Mitchell, Adcroft, Alistair, Zhang, Yongfei, Zanna, Laure | Sea Ice Concentration | ||
| Heterogeneous melting near the Thwaites Glacier grounding line | Schmidt, B. E., Washam, P., Davis, P. E. D., Nicholls, K. W., Holland, D. M., Lawrence, J. D., Riverman, K. L., Smith, J. A., Spears, A., Dichek, D. J. G., Mullen, A. D., Clyne, E., Yeager, B., Anker, P., Meister, M. R., Hurwitz, B. C., Quartini, E. S., Bryson, F. E., Basinski-Ferris, A., Thomas, C., Wake, J., Vaughan, D. G., Anandakrishnan, S., Rignot, E., Paden, J., Makinson, K. | Ice Velocity | ||
| Hierarchical off-diagonal low-rank approximation of Hessians in inverse | Hartland, Tucker, Stadler, Georg, Perego, Mauro, Liegeois, Kim, Petra, Noemi | Ice Velocity | ||
| High Resolution SnowModel Simulations Reveal Future ElevationDependent Snow Loss and Earlier, Flashier Surface Water Input for the Upper Colorado River ... | Hammond, John C., Sexstone, Graham A., Putman, Annie L., Barnhart, Theodore B., Rey, David M., Driscoll, Jessica M., Liston, Glen E., Rasmussen, Kristen L., McGrath, Daniel, Fassnacht, Steven R., Kampf, Stephanie K. | Snow Cover | ||
| High Spatial Melt Rate Variability Near the Totten Glacier Grounding | Vankova, Irena, Winberry, J. Paul, Cook, Sue, Nicholls, Keith W., Greene, Chad A., GaltonFenzi, Benjamin K. | Gravity | ||
| Heterogeneity in glacier thinning and slowdown of ice movement in the | Bhambri, Rakesh, Schmidt, Susanne, Chand, Pritam, Nusser, Marcus, Haritashya, Umesh, Sain, Kalachand, Tiwari, Sameer K., Yadav, Jairam Singh | Digital Elevation/Terrain Model (DEM) | ||
| High-frequency time series comparison of Sentinel-1 and Sentinel-2 satellites for mapping open and vegetated water across the United States (20172021) | Vanderhoof, Melanie K., Alexander, Laurie, Christensen, Jay, Solvik, Kylen, Nieuwlandt, Peter, Sagehorn, Mallory | Albedo, Snow Cover | ||
| Grounding line positions of Amery Ice Shelf based on long interferometric Sentinel-1 time series | Tympalski, Micha, Sompolski, Marek, Kopec, Anna, Milczarek, Wojciech | Grounding Line, Ice Velocity | ||
| Grounding line retreat and tide-modulated ocean channels at | Li, Tian, Dawson, Geoffrey J., Chuter, Stephen J., Bamber, Jonathan L. | Ice Velocity, Grounding Line, Glacier Elevation/Ice Sheet Elevation, Glacier Topography/Ice Sheet Topography, Ice Sheets, Reflectance, Bathymetry, Bed Elevation, Firn Air Content, Glacier/Ice Sheet Thickness, Terrain Elevation, Glacier Elevation/Ice Sheet Elevation |
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| Grounding Zone of Amery Ice Shelf, Antarctica, From Differential SyntheticAperture Radar Interferometry | Chen, Hanning, Rignot, Eric, Scheuchl, Bernd, Ehrenfeucht, Shivani | Bathymetry, Bed Elevation, Firn Air Content, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| Higher Frozen Soil Permeability Represented in a Hydrological Model Improves Spring Streamflow Prediction From River Basin to Continental Scales | Agnihotri, Jetal, Behrangi, Ali, Tavakoly, Ahmad, Geheran, Matthew, Farmani, Mohammad A., Niu, GuoYue | Brightness Temperature, Surface Soil Moisture | ||
| Estimates of Dust Emissions and Organic Carbon Losses Induced by Wind Erosion in Farmland Worldwide from 2017 to 2021 | Liu, Yongxiang, Zhao, Hongmei, Zhao, Guangying, Cao, Xinyuan, Zhang, Xuelei, Xiu, Aijun | Snow Cover |