Publications — updated Feb 20, 2026

updated Feb 20, 2026

in preparation

Example: Replace With Your In-Progress Paper Title

— M. R. Gallagher, A. N. Coauthor. 2026. (in preparation).
2026

Impacts of Atmospheric Rivers in Central Greenland: Snowfall, Clouds, and Atmospheric State

— A. E. Wedum, C. Pettersen, H. Guy, M. R. Gallagher, et al. Journal of Geophysical Research: Atmospheres, 2026. 10.1029/2025JD044309
2025

Observations of surface energy fluxes and meteorology in the seasonally snow-covered high-elevation East River watershed during SPLASH, 2021–2023

— C. J. Cox, J. M. Intrieri, B. J. Butterworth, G. de Boer, et al. Earth System Science Data, 2025. 10.5194/essd-17-1481-2025

An Observational Constraint for Future Greenland Rain in a Warmer Atmosphere

— M. Thompson‐Munson, J. E. Kay, B. R. Markle, L. Bertrand, et al. Geophysical Research Letters, 2025. 10.1029/2025GL114710
2024

Design and Field Testing of the Heavyweight Ice Gateway Buoy to Support Arctic Science

— S. E. Webster, A. Falcone, A. Jost, K. Smith, et al. OCEANS 2024 - Halifax, 2024. 10.1109/oceans55160.2024.10754089

Polar Low Circulation Enhances Greenland's West Coast Cloud Surface Warming

— J. Lac, H. Chepfer, A. Arouf, M. D. Shupe, et al. Journal of Geophysical Research: Atmospheres, 2024. 10.1029/2023JD040450

Special Observing Period (SOP) Data for the Year of Polar Prediction site Model Intercomparison Project (YOPPsiteMIP)

— Z. Mariani, S. Morris, T. Uttal, E. Akish, et al. 2024. 10.5194/essd-2023-497
2023

Surface Turbulent Fluxes From the MOSAiC Campaign Predicted by Machine Learning

— D. P. Cummins, V. Guemas, C. J. Cox, M. R. Gallagher, et al. Geophysical Research Letters, 2023. 10.1029/2023GL105698

The YOPP site Model Intercomparison Project (YOPPsiteMIP) phase 1: project overview and Arctic winter forecast evaluation

— J. Day, G. Svensson, B. Casati, T. Uttal, et al. 2023. 10.5194/egusphere-2023-1951

Supporting Advancement in Weather and Water Prediction in the Upper Colorado River Basin: The SPLASH Campaign

— G. de Boer, A. White, R. Cifelli, J. Intrieri, et al. Bulletin of the American Meteorological Society, 2023. 10.1175/bams-d-22-0147.1

Continuous observations of the surface energy budget and meteorology over the Arctic sea ice during MOSAiC

— C. J. Cox, M. R. Gallagher, M. D. Shupe, P. O. G. Persson, et al. Scientific Data, 2023. 10.1038/s41597-023-02415-5

Impact of Seasonal Snow‐Cover Change on the Observed and Simulated State of the Atmospheric Boundary Layer in a High‐Altitude Mountain Valley

— B. Adler, J. M. Wilczak, L. Bianco, L. Bariteau, et al. Journal of Geophysical Research: Atmospheres, 2023. 10.1029/2023JD038497

Wind redistribution of snow impacts the Ka- and Ku-band radar signatures of Arctic sea ice

— V. Nandan, R. Willatt, R. Mallett, J. Stroeve, et al. The Cryosphere, 2023. 10.5194/tc-17-2211-2023

Meltwater layer dynamics in a central Arctic lead: Effects of lead width, re-freezing, and mixing during late summer

— N. Daiki, K. Yusuke, W. A. L., L. Yuhong, et al. Elementa: Science of the Anthropocene, 2023. 10.1525/elementa.2022.00102
2022

Rain on snow (ROS) understudied in sea ice remote sensing: a multi-sensor analysis of ROS during MOSAiC (Multidisciplinary drifting Observatory for the Study of Arctic Climate)

— J. Stroeve, V. Nandan, R. Willatt, R. Dadic, et al. The Cryosphere, 2022. 10.5194/tc-16-4223-2022

Turbulent Mixing During Late Summer in the Ice–Ocean Boundary Layer in the Central Arctic Ocean: Results From the MOSAiC Expedition

— Y. Kawaguchi, Z. Koenig, D. Nomura, M. Hoppmann, et al. Journal of Geophysical Research: Oceans, 2022. 10.1029/2021JC017975

The surface longwave cloud radiative effect derived from space lidar observations

— A. Arouf, H. Chepfer, T. V. de Guélis, M. Chiriaco, et al. Atmospheric Measurement Techniques, 2022. 10.5194/amt-15-3893-2022

Overview of the MOSAiC expedition: Atmosphere

— M. D. Shupe, M. Rex, B. Blomquist, P. O. G. Persson, et al. Elem Sci Anth, 2022. 10.1525/elementa.2021.00060

Relating snowfall observations to Greenland ice sheet mass changes: an atmospheric circulation perspective

— M. R. Gallagher, M. D. Shupe, H. Chepfer, T. L'Ecuyer. The Cryosphere, 2022. 10.5194/tc-16-435-2022
2020

Warm Temperature Extremes Across Greenland Connected to Clouds

— M. R. Gallagher, H. Chepfer, M. D. Shupe, R. Guzman. Geophysical Research Letters, 2020. 10.1029/2019GL086059
2019

The Aleutian Low‐Beaufort Sea Anticyclone: A Climate Index Correlated With the Timing of Springtime Melt in the Pacific Arctic Cryosphere

— C. J. Cox, R. S. Stone, D. C. Douglas, D. M. Stanitski, et al. Geophysical Research Letters, 2019. 10.1029/2019GL083306
2018

Impact of Atmospheric Circulation on Temperature, Clouds, and Radiation at Summit Station, Greenland, with Self-Organizing Maps

— M. R. Gallagher, M. D. Shupe, N. B. Miller. Journal of Climate, 2018. 10.1175/JCLI-D-17-0893.1