Data supporting the North Atlantic Climate System Integrated Study (ACSIS) programme, including atmospheric composition; oceanographic and sea-ice observations (2016–2022); and output from ocean, atmosphere, land, and sea-ice models (1950–2050)
Alexander T. Archibald(University of Cambridge), Mingxi Yang(Plymouth Marine Laboratory), D. L. Feltham(University of Reading), C. R. MacIntosh(European Centre for Space Applications and Telecommunications), Stéphane Bauguitte(Facility for Airborne Atmospheric Measurements), James Keeble(University of Cambridge), Tim Smyth, Dwayne E. Heard(University of Leeds), Andrew C. Coward(National Oceanography Centre), Thomas J. Bannan(University of Manchester), Elizabeth C. Kent(National Oceanography Centre), Ben Moat(National Oceanography Centre), David I. Berry(World Meteorological Organization), M. R. Russo(University of Cambridge), Huihui Wu(University of Manchester), Hugh Coe(University of Manchester), Bablu Sinha(National Oceanography Centre), Lucy J. Carpenter(University of York), David Schröeder(Centre for Polar Observation and Modelling), Katie Read(University of York), Brian King(National Oceanography Centre), Loren Temple(University of York), Navaneeth Thamban(University of Manchester), P. M. Edwards(University of Leeds), Freya Squires(University of York), Nathan Luke Abraham(University of Cambridge), James R. Hopkins(National Centre for Atmospheric Science), Simon Williams(National Oceanography Centre), Alex Megann(National Oceanography Centre), Thomas G. Bell(Plymouth Marine Laboratory), Isobel R. Lawrence(University of Leeds), Lisa K. Whalley(University of Leeds), James Lee(University of York), Chris Reed(Nanotherapeutics (United States)), R. Schiemann(National Centre for Atmospheric Science), Emily Matthews(University of Manchester), Malcolm Roberts(Met Office)
Cited by 5
Related Papers
Global analyses of sea surface temperature, sea ice, and night marine air temperature since the late nineteenth century
|Journal of Geophysical Research Atmospheres|2003|11.4k
Halogens and their role in polar boundary-layer ozone depletion
|Atmospheric chemistry and physics|2007|679
An overview of snow photochemistry: evidence, mechanisms and impacts
|Atmospheric chemistry and physics|2007|664
Tropospheric ozone changes, radiative forcing and attribution to emissions in the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP)
|Atmospheric chemistry and physics|2013|525