• The Community Inversion Framework v1.0: a unified system for atmospheric inversion studies 

      Berchet, Antoine; Sollum, Espen; Thompson, Rona Louise; Pison, Isabelle; Thanwerdas, Joel; Broquet, Grégoire; Chevallier, Frédéric; Aalto, Tuula; Berchet, Adrien; Bergamaschi, Peter; Brunner, Dominik; Engelen, Richard; Fortems-Cheiney, Audrey; Gerbig, Christoph; Zwaaftink, Christine Groot; Haussaire, Jean-Matthieu; Henne, Stephan; Houweling, Sanne; Karstens, Ute; Kutsch, Werner L.; Luijkx, Ingrid T.; Monteil, Guillaume; Palmer, Paul I.; van Peet, Jacob C. A.; Peters, Wouter; Peylin, Philippe; Potier, Elise; Rödenbeck, Christian; Saunois, Marielle; Scholze, Marko; Tsuruta, Aki; Zhao, Yuanhong (Peer reviewed; Journal article, 2021)
      Atmospheric inversion approaches are expected to play a critical role in future observation-based monitoring systems for surface fluxes of greenhouse gases (GHGs), pollutants and other trace gases. In the past decade, the ...
    • The regional European atmospheric transport inversion comparison, EUROCOM: first results on European-wide terrestrial carbon fluxes for the period 2006–2015 

      Monteil, Guillaume; Broquet, Grégoire; Scholze, Marko; Lang, Matthew; Karstens, Ute; Gerbig, Christoph; Koch, Frank-Thomas; Smith, Naomi; Thompson, Rona Louise; Luijkx, Ingrid T.; White, Emily; Meesters, Antoon; Ciais, Philippe; Ganesan, Anita L.; Manning, Alistair; Mischurow, Michael; Peters, Wouter; Peylin, Philippe; Tarniewicz, Jerome; Rigby, Matt; Rödenbeck, Christian; Vermeulen, Alex; Walton, Evie M. (Peer reviewed; Journal article, 2020)
      Atmospheric inversions have been used for the past two decades to derive large-scale constraints on the sources and sinks of CO2 into the atmosphere. The development of dense in situ surface observation networks, such as ...