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Environmental Sciences

D-Index
45
Citations
13657
World Ranking
6244
National Ranking
2252

Overview

Matthew C. Long is affiliated with the National Center for Atmospheric Research in the United States. They have contributed extensively to the fields of Earth and Planetary Sciences as well as Environmental Science, with a particular focus on Oceanography, Global and Planetary Change, and Atmospheric Science among other subfields.

The scientist's research primarily addresses marine and coastal ecosystems, oceanographic and atmospheric processes, and climate variability and models. Additional study topics include atmospheric and environmental gas dynamics, ocean acidification effects and responses, marine biology and ecology research, and marine and fisheries research.

Frequent publication venues for their work include:

  • Global Biogeochemical Cycles
  • Frontiers in Marine Science
  • Journal of Geophysical Research Oceans
  • Biogeosciences
  • Journal of Advances in Modeling Earth Systems

Matthew C. Long has collaborated frequently with several researchers, including:

  • Keith Lindsay
  • Michael N. Levy
  • Kristen M. Krumhardt
  • Nicole S. Lovenduski
  • Scott C. Doney

Notable recent publications by the researcher are:

  • The Community Earth System Model Version 2 (CESM2), 2020, Journal of Advances in Modeling Earth Systems
  • Tracking Improvement in Simulated Marine Biogeochemistry Between CMIP5 and CMIP6, 2020, Current Climate Change Reports
  • Evaluation of global ocean-sea-ice model simulations based on the experimental protocols of the Ocean Model Intercomparison Project phase 2 (OMIP-2), 2020, Geoscientific Model Development
  • Simulations With the Marine Biogeochemistry Library (MARBL), 2021, Journal of Advances in Modeling Earth Systems
  • Strong Southern Ocean carbon uptake evident in airborne observations, 2021, Science

Best Publications

  • The Community Earth System Model Version 2 (CESM2)

    G. Danabasoglu;J. F. Lamarque;J. Bacmeister;D. A. Bailey

  • The Community Earth System Model: A Framework for Collaborative Research

    James W. Hurrell;M. M. Holland;P. R. Gent;S. Ghan

  • Marine Ecosystem Dynamics and Biogeochemical Cycling in the Community Earth System Model [CESM1(BGC)]: Comparison of the 1990s with the 2090s under the RCP4.5 and RCP8.5 Scenarios

    J. Keith Moore;Keith Lindsay;Scott C. Doney;Matthew C. Long

  • Sustained climate warming drives declining marine biological productivity.

    J. Keith Moore;Weiwei Fu;Francois Primeau;Gregory L. Britten

  • Tracking Improvement in Simulated Marine Biogeochemistry Between CMIP5 and CMIP6.

    Roland Séférian;Sarah Berthet;Andrew Yool;Julien Palmiéri

  • Coastal Southern Ocean: A strong anthropogenic CO2 sink

    Kevin R. Arrigo;Gert van Dijken;Matthew Long

  • Rapid emergence of climate change in environmental drivers of marine ecosystems

    Stephanie A. Henson;Claudie Beaulieu;Tatiana Ilyina;Jasmin G. John

  • Predicting near-term changes in the Earth System: A large ensemble of initialized decadal prediction simulations using the Community Earth System Model

    S. G. Yeager;G. Danabasoglu;N. A. Rosenbloom;W. Strand

  • Upper ocean O2 trends: 1958–2015

    Takamitsu Ito;Shoshiro Minobe;Matthew C. Long;Curtis Deutsch

  • Twentieth-Century Oceanic Carbon Uptake and Storage in CESM1(BGC)*

    Matthew C. Long;Keith Lindsay;Synte Peacock;J. Keith Moore

  • Finding forced trends in oceanic oxygen

    Matthew C. Long;Curtis Deutsch;Taka Ito

  • Evaluation of global ocean–sea-ice model simulations based on the experimental protocols of the Ocean Model Intercomparison Project phase 2 (OMIP-2)

    Hiroyuki Tsujino;L. Shogo Urakawa;Stephen M. Griffies;Stephen M. Griffies;Gokhan Danabasoglu

  • Preindustrial-Control and Twentieth-Century Carbon Cycle Experiments with the Earth System Model CESM1(BGC)

    Keith Lindsay;Gordon B. Bonan;Scott C. Doney;Forrest M. Hoffman

  • Interactive effects of iron, irradiance and CO2 on Ross Sea phytoplankton

    Y. Feng;C. E. Hare;J. M. Rose;J. M. Rose;S. M. Handy

  • Revision of global carbon fluxes based on a reassessment of oceanic and riverine carbon transport

    L. Resplandy;R. F. Keeling;Christian Rödenbeck;B. B. Stephens

  • Simulations with the Marine Biogeochemistry Library (MARBL)

    Matthew C. Long;J. Keith Moore;Keith Lindsay;Michael Levy

  • An assessment of Antarctic Circumpolar Current and Southern Ocean meridional overturning circulation during 1958–2007 in a suite of interannual CORE-II simulations

    Riccardo Farneti;Stephanie M. Downes;Stephen M. Griffies;Simon J. Marsland

  • Timescales for detection of trends in the ocean carbon sink

    Galen A. McKinley;Darren J. Pilcher;Darren J. Pilcher;Amanda R. Fay;Keith Lindsay

  • Satellite sensor requirements for monitoring essential biodiversity variables of coastal ecosystems

    Frank E. Muller‐Karger;Erin Hestir;Christiana Ade;Kevin Turpie

  • Early season depletion of dissolved iron in the Ross Sea polynya : Implications for iron dynamics on the Antarctic continental shelf

    Peter N. Sedwick;Christopher M. Marsay;Bettina M. Sohst;Ana M. Aguilar-Islas

Frequent Co-Authors

Keith Lindsay
Keith Lindsay National Center for Atmospheric Research
Nicole S. Lovenduski
Nicole S. Lovenduski University of Colorado Boulder
Scott C. Doney
Scott C. Doney University of Virginia
Ralph F. Keeling
Ralph F. Keeling University of California, San Diego
Robert B. Dunbar
Robert B. Dunbar Stanford University
John P. Dunne
John P. Dunne Geophysical Fluid Dynamics Laboratory
Giacomo R. DiTullio
Giacomo R. DiTullio College of Charleston
Laure Resplandy
Laure Resplandy Princeton University
Stephen G. Yeager
Stephen G. Yeager National Center for Atmospheric Research
Walker O. Smith
Walker O. Smith Shanghai Jiao Tong University

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