ABoVE Publications
Search Criteria
- Date Range: Start Year: 2021
- Date Range: Start Month: October
- Date Range: End Year: 2022
- Date Range: End Month: September
68 Publication(s) Matched
New Search or Revise your last search by clicking on your Browser's Back Button.
Liu, Z., Kimball, J. S., Ballantyne, A. P., Parazoo, N. C., Wang, W. J., Bastos, A., Madani, N., Natali, S. M., Watts, J. D., Rogers, B. M., Ciais, P., Yu, K., Virkkala, A., Chevallier, F., Peters, W., Patra, P. K., Chandra, N. 2022. Respiratory loss during late-growing season determines the net carbon dioxide sink in northern permafrost regions. Nature Communications. 13(1). doi: 10.1038/s41467-022-33293-x ( Kimball (TE 2018) Natali (TE 2014) Parazoo (IDS 2016) Rogers (CARBON 2016) Watts (NIP 2017) ) |
Elder, M., Phillips, C. A., Potter, S., Frumhoff, P. C., Rogers, B. M. 2022. The costs and benefits of fire management for carbon mitigation in Alaska through 2100. Environmental Research Letters. 17(10), 105001. doi: 10.1088/1748-9326/ac8e85 ( Rogers (TE 2014) ) [quad chart] |
Liu, Z., Kimball, J. S., Ballantyne, A. P., Parazoo, N. C., Wang, W. J., Bastos, A., Madani, N., Natali, S. M., Watts, J. D., Rogers, B. M., Ciais, P., Yu, K., Virkkala, A., Chevallier, F., Peters, W., Patra, P. K., Chandra, N. 2022. Respiratory loss during late-growing season determines the net carbon dioxide sink in northern permafrost regions. Nature Communications. 13(1). doi: 10.1038/s41467-022-33293-x ( Kimball (TE 2018) Natali (TE 2014) Parazoo (IDS 2016) Rogers (CARBON 2016) Watts (NIP 2017) ) [quad chart] |
Yuan, K., Zhu, Q., Li, F., Riley, W. J., Torn, M., Chu, H., McNicol, G., Chen, M., Knox, S., Delwiche, K., Wu, H., Baldocchi, D., Ma, H., Desai, A. R., Chen, J., Sachs, T., Ueyama, M., Sonnentag, O., Helbig, M., Tuittila, E., Jurasinski, G., Koebsch, F., Campbell, D., Schmid, H. P., Lohila, A., Goeckede, M., Nilsson, M. B., Friborg, T., Jansen, J., Zona, D., Euskirchen, E., Ward, E. J., Bohrer, G., Jin, Z., Liu, L., Iwata, H., Goodrich, J., Jackson, R. 2022. Causality guided machine learning model on wetland CH4 emissions across global wetlands. Agricultural and Forest Meteorology. 324, 109115. doi: 10.1016/j.agrformet.2022.109115 ( Chen (TE 2018) , 4 citations ) |
Liu, Z., Kimball, J. S., Ballantyne, A. P., Parazoo, N. C., Wang, W. J., Bastos, A., Madani, N., Natali, S. M., Watts, J. D., Rogers, B. M., Ciais, P., Yu, K., Virkkala, A., Chevallier, F., Peters, W., Patra, P. K., Chandra, N. 2022. Respiratory loss during late-growing season determines the net carbon dioxide sink in northern permafrost regions. Nature Communications. 13(1). doi: 10.1038/s41467-022-33293-x ( Kimball (TE 2018) Natali (TE 2014) Parazoo (IDS 2016) Rogers (CARBON 2016) Watts (NIP 2017) ) [quad chart] |
Natali, S. M., Bronen, R., Cochran, P., Holdren, J. P., Rogers, B. M., Treharne, R. 2022. Incorporating permafrost into climate mitigation and adaptation policy. Environmental Research Letters. 17(9), 091001. doi: 10.1088/1748-9326/ac8c5a ( Rogers (2022) ) |
Dashti, H., Smith, W. K., Huo, X., Fox, A. M., Javadian, M., Devine, C. J., Behrangi, A., Moore, D. J. 2022. Underestimation of the impact of land cover change on the biophysical environment of the Arctic and Boreal Region of North America. Environmental Research Letters. doi: 10.1088/1748-9326/ac8da7 ( Moore (TE 2018) ) |
Webb, E. E., Liljedahl, A. K., Cordeiro, J. A., Loranty, M. M., Witharana, C., Lichstein, J. W. 2022. Permafrost thaw drives surface water decline across lake-rich regions of the Arctic. Nature Climate Change. doi: 10.1038/s41558-022-01455-w ( Webb (FINESST 2019), 6 citations ) [quad chart] |
Schneider, M., Ertl, B., Tu, Q., Diekmann, C. J., Khosrawi, F., Rohling, A. N., Hase, F., Dubravica, D., Garcia, O. E., Sepulveda, E., Borsdorff, T., Landgraf, J., Lorente, A., Butz, A., Chen, H., Kivi, R., Laemmel, T., Ramonet, M., Crevoisier, C., Pernin, J., Steinbacher, M., Meinhardt, F., Strong, K., Wunch, D., Warneke, T., Roehl, C., Wennberg, P. O., Morino, I., Iraci, L. T., Shiomi, K., Deutscher, N. M., Griffith, D. W. T., Velazco, V. A., Pollard, D. F. 2022. Synergetic use of IASI profile and TROPOMI total-column level 2 methane retrieval products. Atmospheric Measurement Techniques. 15(14), 4339-4371. doi: 10.5194/amt-15-4339-2022 ( Wunch (2016), 3 citations ) |
Noel, S., Reuter, M., Buchwitz, M., Borchardt, J., Hilker, M., Schneising, O., Bovensmann, H., Burrows, J. P., Di Noia, A., Parker, R. J., Suto, H., Yoshida, Y., Buschmann, M., Deutscher, N. M., Feist, D. G., Griffith, D. W. T., Hase, F., Kivi, R., Liu, C., Morino, I., Notholt, J., Oh, Y., Ohyama, H., Petri, C., Pollard, D. F., Rettinger, M., Roehl, C., Rousogenous, C., Sha, M. K., Shiomi, K., Strong, K., Sussmann, R., Te, Y., Velazco, V. A., Vrekoussis, M., Warneke, T. 2022. Retrieval of greenhouse gases from GOSAT and GOSAT-2 using the FOCAL algorithm. Atmospheric Measurement Techniques. 15(11), 3401-3437. doi: 10.5194/amt-15-3401-2022 ( Wunch (2016), 2 citations ) |
Kyzivat, E. D., Smith, L. C., Garcia-Tigreros, F., Huang, C., Wang, C., Langhorst, T., Fayne, J. V., Harlan, M. E., Ishitsuka, Y., Feng, D., Dolan, W., Pitcher, L. H., Wickland, K. P., Dornblaser, M. M., Striegl, R. G., Pavelsky, T. M., Butman, D. E., Gleason, C. J. 2022. The Importance of Lake Emergent Aquatic Vegetation for Estimating Arctic-Boreal Methane Emissions. Journal of Geophysical Research: Biogeosciences. 127(6). doi: 10.1029/2021JG006635 ( Butman (TE 2018), 2 citations ) [quad chart] [What We're Learning] |
Reinking, A. K., Hojlund Pedersen, S., Elder, K., Boelman, N. T., Glass, T. W., Oates, B. A., Bergen, S., Roberts, S., Prugh, L. R., Brinkman, T. J., Coughenour, M. B., Feltner, J. A., Barker, K. J., Bentzen, T. W., Pedersen, A. O., Schmidt, N. M., Liston, G. E. 2022. Collaborative wildlife-snow science: Integrating wildlife and snow expertise to improve research and management. Ecosphere. 13(6). doi: 10.1002/ecs2.4094 ( Boelman (TE 2018), 1 citations ) |
Sweeney, C., Chatterjee, A., Wolter, S., McKain, K., Bogue, R., Conley, S., Newberger, T., Hu, L., Ott, L., Poulter, B., Schiferl, L., Weir, B., Zhang, Z., Miller, C. E. 2022. Using atmospheric trace gas vertical profiles to evaluate model fluxes: a case study of Arctic-CAP observations and GEOS simulations for the ABoVE domain. Atmospheric Chemistry and Physics. 22(9), 6347-6364. doi: 10.5194/acp-22-6347-2022 ( Chatterjee (TE 2016) McKain (TE 2016), 2 citations ) |
Zhang, Z., Chatterjee, A., Ott, L., Reichle, R., Feldman, A. F., Poulter, B. 2022. Effect of Assimilating SMAP Soil Moisture on CO2 and CH4 Fluxes through Direct Insertion in a Land Surface Model. Remote Sensing. 14(10), 2405. doi: 10.3390/rs14102405 ( Chatterjee (TE 2016), 3 citations ) |
Sweeney, C., Chatterjee, A., Wolter, S., McKain, K., Bogue, R., Conley, S., Newberger, T., Hu, L., Ott, L., Poulter, B., Schiferl, L., Weir, B., Zhang, Z., Miller, C. E. 2022. Using atmospheric trace gas vertical profiles to evaluate model fluxes: a case study of Arctic-CAP observations and GEOS simulations for the ABoVE domain. Atmospheric Chemistry and Physics. 22(9), 6347-6364. doi: 10.5194/acp-22-6347-2022 ( Chatterjee (TE 2016) McKain (TE 2016), 2 citations ) |
Zhang, Y., Piao, S., Sun, Y., Rogers, B. M., Li, X., Lian, X., Liu, Z., Chen, A., Penuelas, J. 2022. Future reversal of warming-enhanced vegetation productivity in the Northern Hemisphere. Nature Climate Change. doi: 10.1038/s41558-022-01374-w ( Rogers (CARBON 2016), 5 citations ) [quad chart] |
Macander, M. J., Nelson, P. R., Nawrocki, T. W., Frost, G. V., Orndahl, K. M., Palm, E. C., Wells, A. F., Goetz, S. J. 2022. Time-series maps reveal widespread change in plant functional type cover across Arctic and boreal Alaska and Yukon. Environmental Research Letters. 17(5), 054042. doi: 10.1088/1748-9326/ac6965 ( Goetz (TE 2018) Goetz (TE 2021), 3 citations ) [quad chart] [What We're Learning] |
Zeng, Y., Hao, D., Huete, A., Dechant, B., Berry, J., Chen, J. M., Joiner, J., Frankenberg, C., Bond-Lamberty, B., Ryu, Y., Xiao, J., Asrar, G. R., Chen, M. 2022. Optical vegetation indices for monitoring terrestrial ecosystems globally. Nature Reviews Earth & Environment. 3(7), 477-493. doi: 10.1038/s43017-022-00298-5 ( Chen (TE 2018), 40 citations ) |
Macander, M. J., Nelson, P. R., Nawrocki, T. W., Frost, G. V., Orndahl, K. M., Palm, E. C., Wells, A. F., Goetz, S. J. 2022. Time-series maps reveal widespread change in plant functional type cover across Arctic and boreal Alaska and Yukon. Environmental Research Letters. 17(5), 054042. doi: 10.1088/1748-9326/ac6965 ( Goetz (TE 2018) Goetz (TE 2021), 3 citations ) [What We're Learning] |
Turner, K. W., Wolfe, B. B., McDonald, I. 2022. Monitoring 13 years of drastic catchment change and the hydroecological responses of a drained thermokarst lake. Arctic Science. doi: 10.1139/AS-2020-0022 ( Turner-K (2007), 1 citations ) |
Zhang, Y., Woodcock, C. E., Chen, S., Wang, J. A., Sulla-Menashe, D., Zuo, Z., Olofsson, P., Wang, Y., Friedl, M. A. 2022. Mapping causal agents of disturbance in boreal and arctic ecosystems of North America using time series of Landsat data. Remote Sensing of Environment. 272, 112935. doi: 10.1016/j.rse.2022.112935 ( Woodcock (TE 2014), 8 citations ) |
Phillips, C. A., Rogers, B. M., Elder, M., Cooperdock, S., Moubarak, M., Randerson, J. T., Frumhoff, P. C. 2022. Escalating carbon emissions from North American boreal forest wildfires and the climate mitigation potential of fire management. Science Advances. 8(17). doi: 10.1126/sciadv.abl7161 ( Rogers (TE 2014), 5 citations ) [quad chart] |
Schneider, A., Borsdorff, T., aan de Brugh, J., Lorente, A., Aemisegger, F., Noone, D., Henze, D., Kivi, R., Landgraf, J. 2022. Retrieving H2O/HDO columns over cloudy and clear-sky scenes from the Tropospheric Monitoring Instrument (TROPOMI). Atmospheric Measurement Techniques. 15(7), 2251-2275. doi: 10.5194/amt-15-2251-2022 ( Wunch (2016), 3 citations ) |
Yang, J. C., Magney, T. S., Albert, L. P., Richardson, A. D., Frankenberg, C., Stutz, J., Grossmann, K., Burns, S. P., Seyednasrollah, B., Blanken, P. D., Bowling, D. R. 2022. Gross primary production (GPP) and red solar induced fluorescence (SIF) respond differently to light and seasonal environmental conditions in a subalpine conifer forest. Agricultural and Forest Meteorology. 317, 108904. doi: 10.1016/j.agrformet.2022.108904 ( Frankenberg (TE 2018), 4 citations ) |
Ludwig, S. M., Natali, S. M., Mann, P. J., Schade, J. D., Holmes, R. M., Powell, M., Fiske, G., Commane, R. 2022. Using Machine Learning to Predict Inland Aquatic CO 2 and CH 4 Concentrations and the Effects of Wildfires in the Yukon-Kuskokwim Delta, Alaska. Global Biogeochemical Cycles. 36(4). DOI: 10.1029/2021GB007146 ( Ludwig (FINESST 2019), 1 citations ) |
Orndahl, K. M., Ehlers, L. P. W., Herriges, J. D., Pernick, R. E., Hebblewhite, M., Goetz, S. J. 2022. Mapping tundra ecosystem plant functional type cover, height and aboveground biomass in Alaska and northwest Canada using unmanned aerial vehicles. Arctic Science. doi: 10.1139/AS-2021-0044 ( Goetz (TE 2021), 1 citations ) |
Zona, D., Lafleur, P. M., Hufkens, K., Bailey, B., Gioli, B., Burba, G., Goodrich, J. P., Liljedahl, A. K., Euskirchen, E. S., Watts, J. D., Farina, M., Kimball, J. S., Heimann, M., Gockede, M., Pallandt, M., Christensen, T. R., Mastepanov, M., Lopez-Blanco, E., Jackowicz-Korczynski, M., Dolman, A. J., Marchesini, L. B., Commane, R., Wofsy, S. C., Miller, C. E., Lipson, D. A., Hashemi, J., Arndt, K. A., Kutzbach, L., Holl, D., Boike, J., Wille, C., Sachs, T., Kalhori, A., Song, X., Xu, X., Humphreys, E. R., Koven, C. D., Sonnentag, O., Meyer, G., Gosselin, G. H., Marsh, P., Oechel, W. C. 2022. Earlier snowmelt may lead to late season declines in plant productivity and carbon sequestration in Arctic tundra ecosystems. Scientific Reports. 12(1). doi: 10.1038/s41598-022-07561-1 ( Kimball (TE 2014), 6 citations ) |
Koch, J. C., Bogard, M. J., Butman, D. E., Finlay, K., Ebel, B., James, J., Johnston, S. E., Jorgenson, M. T., Pastick, N. J., Spencer, R. G. M., Striegl, R., Walvoord, M., Wickland, K. P. 2022. Heterogeneous Patterns of Aged Organic Carbon Export Driven by Hydrologic Flow Paths, Soil Texture, Fire, and Thaw in Discontinuous Permafrost Headwaters. Global Biogeochemical Cycles. 36(4). doi: 10.1029/2021GB007242 ( Striegl (TE 2014) ) [quad chart] |
Koch, J. C., Bogard, M. J., Butman, D. E., Finlay, K., Ebel, B., James, J., Johnston, S. E., Jorgenson, M. T., Pastick, N. J., Spencer, R. G. M., Striegl, R., Walvoord, M., Wickland, K. P. 2022. Heterogeneous Patterns of Aged Organic Carbon Export Driven by Hydrologic Flow Paths, Soil Texture, Fire, and Thaw in Discontinuous Permafrost Headwaters. Global Biogeochemical Cycles. 36(4). doi: 10.1029/2021GB007242 ( Striegl (TE 2014) ) [quad chart] |
Huemmrich, K. F., Campbell, P., Vargas Z, S. A., Sackett, S., Unger, S., May, J., Tweedie, C., Middleton, E. 2022. Leaf-level chlorophyll fluorescence and reflectance spectra of high latitude plants. Environmental Research Communications. 4(3), 035001. doi: 10.1088/2515-7620/ac5365 ( Huemmrich (TE 2018) ) |
Yi, Y., Chen, R. H., Kimball, J. S., Moghaddam, M., Xu, X., Euskirchen, E. S., Das, N., Miller, C. E. 2022. Potential Satellite Monitoring of Surface Organic Soil Properties in Arctic Tundra From SMAP. Water Resources Research. 58(4). doi: 10.1029/2021WR030957 ( Kimball (TE 2018) ) |
Pierrat, Z., Magney, T., Parazoo, N. C., Grossmann, K., Bowling, D. R., Seibt, U., Johnson, B., Helgason, W., Barr, A., Bortnik, J., Norton, A., Maguire, A., Frankenberg, C., Stutz, J. 2022. Diurnal and Seasonal Dynamics of Solar-Induced Chlorophyll Fluorescence, Vegetation Indices, and Gross Primary Productivity in the Boreal Forest. Journal of Geophysical Research: Biogeosciences. 127(2). doi: 10.1029/2021JG006588 ( Frankenberg (TE 2018) Maguire (NPP 2020) Parazoo (IDS 2016), 13 citations ) |
Campbell, A. D., Fatoyinbo, T., Charles, S. P., Bourgeau-Chavez, L. L., Goes, J., Gomes, H., Halabisky, M., Holmquist, J., Lohrenz, S., Mitchell, C., Moskal, L. M., Poulter, B., Qiu, H., Resende De Sousa, C. H., Sayers, M., Simard, M., Stewart, A. J., Singh, D., Trettin, C., Wu, J., Zhang, X., Lagomasino, D. 2022. A review of carbon monitoring in wet carbon systems using remote sensing. Environmental Research Letters. 17(2), 025009. doi: 10.1088/1748-9326/ac4d4d ( Bourgeau-Chavez (TE 2014) , 13 citations ) |
Brown, M. G., McDonald, K. C., Zimmermann, R., Steiner, N., DeVries, S., Bourgeau-Chavez, L. 2022. Characterization of site-specific vegetation activity in Alaskan wet and dry tundra as related to climate and soil state. Ecosphere. 13(2). doi: 10.1002/ecs2.3939 ( Bourgeau-Chavez (SMAP 2015), 2 citations ) |
Nelson, P. R., Maguire, A. J., Pierrat, Z., Orcutt, E. L., Yang, D., Serbin, S., Frost, G. V., Macander, M. J., Magney, T. S., Thompson, D. R., Wang, J. A., Oberbauer, S. F., Zesati, S. V., Davidson, S. J., Epstein, H. E., Unger, S., Campbell, P. K. E., Carmon, N., Velez-Reyes, M., Huemmrich, K. F. 2022. Remote Sensing of Tundra Ecosystems Using High Spectral Resolution Reflectance: Opportunities and Challenges. Journal of Geophysical Research: Biogeosciences. 127(2). doi: 10.1029/2021JG006697 ( Goetz (TE 2018) Maguire (NPP 2020), 4 citations ) [quad chart] |
Berner, L. T., Goetz, S. J. 2022. Satellite observations document trends consistent with a boreal forest biome shift. Global Change Biology. 28(10), 3275-3292. doi: 10.1111/gcb.16121 ( Goetz (TE 2018) Goetz (TE 2021), 13 citations ) [quad chart] [What We're Learning] |
Bakian-Dogaheh, K., Chen, R. H., Yi, Y., Kimball, J. S., Moghaddam, M., Tabatabaeenejad, A. 2022. A model to characterize soil moisture and organic matter profiles in the permafrost active layer in support of radar remote sensing in Alaskan Arctic tundra. Environmental Research Letters. 17(2), 025011. doi: 10.1088/1748-9326/ac4e37 ( Kimball (TE 2018), 4 citations ) |
Endsley, K. A., Kimball, J. S., Reichle, R. H. 2022. Soil Respiration Phenology Improves Modeled Phase of Terrestrial net Ecosystem Exchange in Northern Hemisphere. Journal of Advances in Modeling Earth Systems. 14(2). doi: 10.1029/2021MS002804 ( Kimball (TE 2018), 2 citations ) |
Nelson, P. R., Maguire, A. J., Pierrat, Z., Orcutt, E. L., Yang, D., Serbin, S., Frost, G. V., Macander, M. J., Magney, T. S., Thompson, D. R., Wang, J. A., Oberbauer, S. F., Zesati, S. V., Davidson, S. J., Epstein, H. E., Unger, S., Campbell, P. K. E., Carmon, N., Velez-Reyes, M., Huemmrich, K. F. 2022. Remote Sensing of Tundra Ecosystems Using High Spectral Resolution Reflectance: Opportunities and Challenges. Journal of Geophysical Research: Biogeosciences. 127(2). doi: 10.1029/2021JG006697 ( Goetz (TE 2018) Maguire (NPP 2020), 4 citations ) [quad chart] |
Berner, L. T., Goetz, S. J. 2022. Satellite observations document trends consistent with a boreal forest biome shift. Global Change Biology. 28(10), 3275-3292. doi: 10.1111/gcb.16121 ( Goetz (TE 2018) Goetz (TE 2021), 13 citations ) [What We're Learning] |
Treharne, R., Rogers, B. M., Gasser, T., MacDonald, E., Natali, S. 2022. Identifying Barriers to Estimating Carbon Release From Interacting Feedbacks in a Warming Arctic. Frontiers in Climate. 3. doi: 10.3389/fclim.2021.716464 ( Natali (GBMF 2019), 4 citations ) |
Virkkala , A., Natali, S. M., Rogers, B. M., Watts, J. D., Savage, K., Connon, S. J., Mauritz, M., Schuur, E. A. G., Peter, D., Minions, C., Nojeim, J., Commane, R., Emmerton, C. A., Goeckede, M., Helbig, M., Holl, D., Iwata, H., Kobayashi, H., Kolari, P., Lopez-Blanco, E., Marushchak, M. E., Mastepanov, M., Merbold, L., Parmentier, F. W., Peichl, M., Sachs, T., Sonnentag, O., Ueyama, M., Voigt, C., Aurela, M., Boike, J., Celis, G., Chae, N., Christensen, T. R., Bret-Harte, M. S., Dengel, S., Dolman, H., Edgar, C. W., Elberling, B., Euskirchen, E., Grelle, A., Hatakka, J., Humphreys, E., Jarveoja, J., Kotani, A., Kutzbach, L., Laurila, T., Lohila, A., Mammarella, I., Matsuura, Y., Meyer, G., Nilsson, M. B., Oberbauer, S. F., Park, S., Petrov, R., Prokushkin, A. S., Schulze, C., St. Louis, V. L., Tuittila, E., Tuovinen, J., Quinton, W., Varlagin, A., Zona, D., Zyryanov, V. I. 2022. The ABCflux database: Arctic-boreal CO<sub>2</sub> flux observations and ancillary information aggregated to monthly time steps across terrestrial ecosystems. Earth System Science Data. 14(1), 179-208. doi: 10.5194/essd-14-179-2022 ( Kimball (TE 2014) Natali (GBMF 2019) Natali (TE 2014) Oechel (TE 2014) Rogers (CARBON 2016) Watts (NIP 2017), 10 citations ) |
He, J., Loboda, T. V., Chen, D., French, N. H. F. 2022. Cloud-to-Ground Lightning and Near-Surface Fire Weather Control Wildfire Occurrence in Arctic Tundra. Geophysical Research Letters. 49(2). doi: 10.1029/2021GL096814 ( Loboda (TE 2014), 7 citations ) [quad chart] |
Taylor, T. E., O'Dell, C. W., Crisp, D., Kuze, A., Lindqvist, H., Wennberg, P. O., Chatterjee, A., Gunson, M., Eldering, A., Fisher, B., Kiel, M., Nelson, R. R., Merrelli, A., Osterman, G., Chevallier, F., Palmer, P. I., Feng, L., Deutscher, N. M., Dubey, M. K., Feist, D. G., Garcia, O. E., Griffith, D. W. T., Hase, F., Iraci, L. T., Kivi, R., Liu, C., De Maziere, M., Morino, I., Notholt, J., Oh, Y., Ohyama, H., Pollard, D. F., Rettinger, M., Schneider, M., Roehl, C. M., Sha, M. K., Shiomi, K., Strong, K., Sussmann, R., Te, Y., Velazco, V. A., Vrekoussis, M., Warneke, T., Wunch, D. 2022. An 11-year record of XCO2 estimates derived from GOSAT measurements using the NASA ACOS version 9 retrieval algorithm. Earth System Science Data. 14(1), 325-360. doi: 10.5194/essd-14-325-2022 ( Wunch (2016), 7 citations ) |
Baskaran, L., Elder, C., Bloom, A. A., Ma, S., Thompson, D., Miller, C. E. 2022. Geomorphological patterns of remotely sensed methane hot spots in the Mackenzie Delta, Canada. Environmental Research Letters. 17(1), 015009. doi: 10.1088/1748-9326/ac41fb ( Miller (TE 2016), 1 citations ) |
Virkkala , A., Natali, S. M., Rogers, B. M., Watts, J. D., Savage, K., Connon, S. J., Mauritz, M., Schuur, E. A. G., Peter, D., Minions, C., Nojeim, J., Commane, R., Emmerton, C. A., Goeckede, M., Helbig, M., Holl, D., Iwata, H., Kobayashi, H., Kolari, P., Lopez-Blanco, E., Marushchak, M. E., Mastepanov, M., Merbold, L., Parmentier, F. W., Peichl, M., Sachs, T., Sonnentag, O., Ueyama, M., Voigt, C., Aurela, M., Boike, J., Celis, G., Chae, N., Christensen, T. R., Bret-Harte, M. S., Dengel, S., Dolman, H., Edgar, C. W., Elberling, B., Euskirchen, E., Grelle, A., Hatakka, J., Humphreys, E., Jarveoja, J., Kotani, A., Kutzbach, L., Laurila, T., Lohila, A., Mammarella, I., Matsuura, Y., Meyer, G., Nilsson, M. B., Oberbauer, S. F., Park, S., Petrov, R., Prokushkin, A. S., Schulze, C., St. Louis, V. L., Tuittila, E., Tuovinen, J., Quinton, W., Varlagin, A., Zona, D., Zyryanov, V. I. 2022. The ABCflux database: Arctic-boreal CO<sub>2</sub> flux observations and ancillary information aggregated to monthly time steps across terrestrial ecosystems. Earth System Science Data. 14(1), 179-208. doi: 10.5194/essd-14-179-2022 ( Kimball (TE 2014) Natali (GBMF 2019) Natali (TE 2014) Oechel (TE 2014) Rogers (CARBON 2016) Watts (NIP 2017), 10 citations ) [quad chart] |
Foster, A. C., Shuman, J. K., Rogers, B. M., Walker, X. J., Mack, M. C., Bourgeau-Chavez, L. L., Veraverbeke, S., Goetz, S. J. 2022. Bottom-up drivers of future fire regimes in western boreal North America. Environmental Research Letters. 17(2), 025006. doi: 10.1088/1748-9326/ac4c1e ( Goetz (TE 2018) Goetz (TE 2021), 6 citations ) [What We're Learning] |
Foster, A. C., Shuman, J. K., Rogers, B. M., Walker, X. J., Mack, M. C., Bourgeau-Chavez, L. L., Veraverbeke, S., Goetz, S. J. 2022. Bottom-up drivers of future fire regimes in western boreal North America. Environmental Research Letters. 17(2), 025006. doi: 10.1088/1748-9326/ac4c1e ( Goetz (TE 2018) Goetz (TE 2021), 6 citations ) [What We're Learning] |
Mendonca, J., Nassar, R., O'Dell, C. W., Kivi, R., Morino, I., Notholt, J., Petri, C., Strong, K., Wunch, D. 2021. Assessing the feasibility of using a neural network to filter Orbiting Carbon Observatory 2 (OCO-2) retrievals at northern high latitudes. Atmospheric Measurement Techniques. 14(12), 7511-7524. doi: 10.5194/amt-14-7511-2021 ( Wunch (2016), 1 citations ) |
Larson, E. J. L., Schiferl, L. D., Commane, R., Munger, J. W., Trugman, A. T., Ise, T., Euskirchen, E. S., Wofsy, S., Moorcroft, P. M. 2021. The changing carbon balance of tundra ecosystems: results from a vertically-resolved peatland biosphere model. Environmental Research Letters. 17(1), 014019. doi: 10.1088/1748-9326/ac4070 ( Munger (CARBON 2016), 3 citations ) |
Elder, C. D., Thompson, D. R., Thorpe, A. K., Chandanpurkar, H. A., Hanke, P. J., Hasson, N., James, S. R., Minsley, B. J., Pastick, N. J., Olefeldt, D., Walter Anthony, K. M., Miller, C. E. 2021. Characterizing Methane Emission Hotspots From Thawing Permafrost. Global Biogeochemical Cycles. 35(12). doi: 10.1029/2020GB006922 ( Miller (TE 2018), 5 citations ) [What We're Learning] |
Zeng, Y., Hao, D., Badgley, G., Damm, A., Rascher, U., Ryu, Y., Johnson, J., Krieger, V., Wu, S., Qiu, H., Liu, Y., Berry, J. A., Chen, M. 2021. Estimating near-infrared reflectance of vegetation from hyperspectral data. Remote Sensing of Environment. 267, 112723. doi: 10.1016/j.rse.2021.112723 ( Chen (TE 2018), 11 citations ) |
Qiu, H., Qi, J., Lee, S., Moglen, G. E., McCarty, G. W., Chen, M., Zhang, X. 2021. Effects of temporal resolution of river routing on hydrologic modeling and aquatic ecosystem health assessment with the SWAT model. Environmental Modelling & Software. 146, 105232. doi: 10.1016/j.envsoft.2021.105232 ( Chen (TE 2018), 3 citations ) |
MacDonald, L. A., Turner, K. W., McDonald, I., Kay, M. L., Hall, R. I., Wolfe, B. B. 2021. Isotopic evidence of increasing water abundance and lake hydrological change in Old Crow Flats, Yukon, Canada. Environmental Research Letters. 16(12), 124024. doi: 10.1088/1748-9326/ac3533 ( Turner-K (2007), 4 citations ) |
Griffin, K. L., Schmiege, S. C., Bruner, S. G., Boelman, N. T., Vierling, L. A., Eitel, J. U. H. 2021. High Leaf Respiration Rates May Limit the Success of White Spruce Saplings Growing in the Kampfzone at the Arctic Treeline. Frontiers in Plant Science. 12. doi: 10.3389/fpls.2021.746464 ( Eitel (TE 2014), 3 citations ) [quad chart] |
Johnston, S. E., Finlay, K., Spencer, R. G. M., Butman, D. E., Metz, M., Striegl, R., Bogard, M. J. 2021. Zooplankton release complex dissolved organic matter to aquatic environments. Biogeochemistry. 157(3), 313-325. doi: 10.1007/s10533-021-00876-7 ( Striegl (TE 2014), 5 citations ) |
Jacobs, N., Simpson, W. R., Graham, K. A., Holmes, C., Hase, F., Blumenstock, T., Tu, Q., Frey, M., Dubey, M. K., Parker, H. A., Wunch, D., Kivi, R., Heikkinen, P., Notholt, J., Petri, C., Warneke, T. 2021. Spatial distributions of XCO2 seasonal cycle amplitude and phase over northern high-latitude regions. Atmospheric Chemistry and Physics. 21(22), 16661-16687. doi: 10.5194/acp-21-16661-2021 ( Wunch (2016), 6 citations ) |
Devoie, E. G., Craig, J. R., Dominico, M., Carpino, O., Connon, R. F., Rudy, A. C. A., Quinton, W. L. 2021. Mechanisms of Discontinuous Permafrost Thaw in Peatlands. Journal of Geophysical Research: Earth Surface. 126(11). doi: 10.1029/2021JF006204 ( Quinton (2017), 6 citations ) |
Kwon, M. J., Ballantyne, A., Ciais, P., Bastos, A., Chevallier, F., Liu, Z., Green, J. K., Qiu, C., Kimball, J. S. 2021. Siberian 2020 heatwave increased spring CO2 uptake but not annual CO2 uptake. Environmental Research Letters. 16(12), 124030. doi: 10.1088/1748-9326/ac358b ( Kimball (TE 2018), 3 citations ) [quad chart] |
Veraverbeke, S., Delcourt, C. J., Kukavskaya, E., Mack, M., Walker, X., Hessilt, T., Rogers, B., Scholten, R. C. 2021. Direct and longer-term carbon emissions from arctic-boreal fires: A short review of recent advances. Current Opinion in Environmental Science & Health. 23, 100277. doi: 10.1016/j.coesh.2021.100277 ( Natali (GBMF 2019) Rogers (TE 2014), 20 citations ) |
Chen, D., Shevade, V., Baer, A., Loboda, T. V. 2021. Missing Burns in the High Northern Latitudes: The Case for Regionally Focused Burned Area Products. Remote Sensing. 13(20), 4145. doi: 10.3390/rs13204145 ( Loboda (TE 2012), 9 citations ) |
Baltzer, J. L., Day, N. J., Walker, X. J., Greene, D., Mack, M. C., Alexander, H. D., Arseneault, D., Barnes, J., Bergeron, Y., Boucher, Y., Bourgeau-Chavez, L., Brown, C. D., Carriere, S., Howard, B. K., Gauthier, S., Parisien, M., Reid, K. A., Rogers, B. M., Roland, C., Sirois, L., Stehn, S., Thompson, D. K., Turetsky, M. R., Veraverbeke, S., Whitman, E., Yang, J., Johnstone, J. F. 2021. Increasing fire and the decline of fire adapted black spruce in the boreal forest. Proceedings of the National Academy of Sciences. 118(45). doi: 10.1073/pnas.2024872118 ( Bourgeau-Chavez (TE 2018) Mack (TE 2014) Rogers (TE 2014), 52 citations ) |
Walker, X. J., Howard, B. K., Jean, M., Johnstone, J. F., Roland, C., Rogers, B. M., Schuur, E. A. G., Solvik, K. K., Mack, M. C. 2021. Impacts of pre-fire conifer density and wildfire severity on ecosystem structure and function at the forest-tundra ecotone. PLOS ONE. 16(10), e0258558. doi: 10.1371/journal.pone.0258558 ( Mack (TE 2014), 3 citations ) |
Walvoord, M. A., Striegl, R. G. 2021. Complex Vulnerabilities of the Water and Aquatic Carbon Cycles to Permafrost Thaw. Frontiers in Climate. 3. doi: 10.3389/fclim.2021.730402 ( Striegl (TE 2014), 5 citations ) [quad chart] |
Keeling, R. F., Graven, H. D. 2021. Insights from Time Series of Atmospheric Carbon Dioxide and Related Tracers. Annual Review of Environment and Resources. 46(1), 85-110. doi: 10.1146/annurev-environ-012220-125406 ( Keeling (CARBON 2016), 10 citations ) [quad chart] |
Baltzer, J. L., Day, N. J., Walker, X. J., Greene, D., Mack, M. C., Alexander, H. D., Arseneault, D., Barnes, J., Bergeron, Y., Boucher, Y., Bourgeau-Chavez, L., Brown, C. D., Carriere, S., Howard, B. K., Gauthier, S., Parisien, M., Reid, K. A., Rogers, B. M., Roland, C., Sirois, L., Stehn, S., Thompson, D. K., Turetsky, M. R., Veraverbeke, S., Whitman, E., Yang, J., Johnstone, J. F. 2021. Increasing fire and the decline of fire adapted black spruce in the boreal forest. Proceedings of the National Academy of Sciences. 118(45). doi: 10.1073/pnas.2024872118 ( Bourgeau-Chavez (TE 2018) Mack (TE 2014) Rogers (TE 2014), 52 citations ) |
Rawlins, M. A., Connolly, C. T., McClelland, J. W. 2021. Modeling Terrestrial Dissolved Organic Carbon Loading to Western Arctic Rivers. Journal of Geophysical Research: Biogeosciences. 126(10). doi: 10.1029/2021JG006420 ( Rawlins (RSWQ 2017), 6 citations ) |
Rawlins, M. A. 2021. Increasing freshwater and dissolved organic carbon flows to Northwest Alaska's Elson lagoon. Environmental Research Letters. 16(10), 105014. doi: 10.1088/1748-9326/ac2288 ( Rawlins (RSWQ 2017), 2 citations ) |