Arctic and Antarctic ice dynamicsClimate change and permafrostIndigenous Studies and Ecology

M. Geoffroy, I. Polyakov, M. Reigstad, S. Acinas, Rémi Amiraux, H. Angot, M. Ardyna, Marcel Babin, C. Bowler, D. Couet, T. Eddy, A. Falciatore, L. Guidi, M. Hoppmann, M. Houssais, L. Karp‐Boss, Connie Lovejoy, Eric Maréchal, E. Pelletier, E. Ortega‐Retuerta, Jean-François Ghiglione, Georg Pohnert, B. Rabe, G. Salazar, J. Schmale, Nina Schuback, M. Sullivan, Sandra Tippenhauer, R. Troublé, E. Trudnowska, A. Vardi, Flora Vincent

2026.1.1Elementa-Science of the Anthropocene

DOI: 10.1525/elementa.2025.00027

Abstract

Climatic changes in the physical environment modulate biogeochemical cycles, biodiversity, and trophic interactions in the Central Arctic Ocean (CAO). Physical processes and sea-ice conditions are highly seasonal in the CAO and dependent on interactions that occur throughout the evolution of the upper ocean–sea ice–lower atmosphere system. Understanding these seasonal interactions is critical to comprehending and predicting the long-term trends as the CAO moves towards ice-free summers and to informing future policy decisions at the core of ongoing discussions concerning the CAO Fisheries agreement, for example, at the Arctic Council and International Council for Exploration of the Sea working group on the CAO. Here, we review current knowledge of the physical environment, biogeochemical cycles, and biodiversity in the waters of the CAO, identify emerging research questions, and introduce the science plan for the first Tara Polaris drift onboard the Tara Polar Station to advance knowledge and address these questions. Despite increased observational programmes in the CAO over the past years, for example, the Nansen and Amundsen Basin Observational System (NABOS) and Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC), extensive knowledge gaps remain in relation to ocean stratification, sea ice and lightscape, nitrogen fixation and nutrient fluxes, carbon export and transfer, sympagic-pelagic coupling, aerosol production, contaminant transport and transformation, chronobiology, and fish distribution. Further knowledge on overall CAO biodiversity, ecosystem functionality and interannual variability is also critically needed. We describe a way forward to address these knowledge gaps using ice-tethered and profiling instruments coupled with multi-omics, culturing, and imagery approaches deployed from Tara Polar Station during the first of ten Tara Polaris drifts designed to facilitate detection of interannual variability and change over time.

Citation format

GEOFFROY, M., et al. Oceanography, biogeochemical cycles, and biodiversity in the central arctic ocean: Current state of knowledge and research directions for the tara polaris expeditions. Elementa-Science of the Anthropocene, 2026, 14(1).