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The National Cosmogenic Nuclides Laboratory (LN2C in french) is a structure dedicated to the use of cosmogenic nuclides in Earth Sciences, notably via the preparation of samples and the measurements of cosmogenic isotopes. Its mission is to provide an effective access to this methodology to the French scientific community, for research projects in the following fields: natural hazards and risks, linked for example to earthquakes or landslides past climate change, for example with the dating of markers associated to glaciations landscape dynamics and the determination of current and past denudation rates dating of archaeological sites and objects. investigation of the magnetic field evolution over time The LN2C consists of a set of laboratories allowing the purification and preparation of different types of sample (rocks, soils, water, etc.) as well as the measurement of different isotopic ratios (10Be/9Be, 26Al/27Al, 36Cl/35Cl, ...) by the national 5MV AMS (Accelerator Mass Spectrometer) facility ASTER. The LN2C regroups faculty members, research scientists, engineers and technicians from Aix Marseille University, CNRS and IRD. The LN2C was founded by Didier Bourlès (AMU Professor), and is hosted by CEREGE on the Technopôle de l'Arbois domain in Aix-en-Provence since 2006.

The installation of the ASTER instrument was possible due to an initial investment by the Bouches du Rhône General Council, the European Regional Development Fund (FEDER), CNRS, IRD and the Provence-Alpes-Côte d'Azur Region council. The LN2C is a technological platform of Aix-Marseille University and is part of the REGEF network. Its operation is supported by a recurring endowment from CNRS and IRD. The LN2C benefited from the Investments for the Future Program via EQUIPEX ASTER-CEREGE, which notably enabled the installation of a high energy source for ASTER.

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Incision rates Production rate 10 Be cosmic-ray exposure dating CRE 36Cl dating Alluvial deposits Organic matter Lake sediment Hillslopes Calibration Cosmic ray exposure dating Fault scarps Nucléides cosmogéniques Mediterranea Cosmogenic Luminescence dating Helium-3 Laschamp excursion Accelerator mass spectrometry Quaternary Datations cosmogéniques Panoply Rock glacier Cosmogenic isotopes Fluvial incision Lateglacial Central Pyrenees Late Pleistocene Erosion rates Brazil Landscape Beryllium 10 Geomorphology Cosmogenic 10Be Paleoclimate Denudation Pleistocene Burial dating Kerguelen Palaeoclimates Cosmogenic radionuclides Deglaciation Cosmogenic nuclide Beryllium 21Ne GSSP stratotype Fluorescence Himalaya Radiocarbon Paleoseismology Central Western Andes Glaciation Cosmogenic burial dating Cave deposits Cosmic-Ray Exposure dating Climate French Alps Chiba composite section Holocene Pyrenees Terrestrial cosmogenic nuclides TCN Glacier fluctuations Coral reef terrace Authigenic 10Be/9Be ratio Cosmonuclide Monsoon Bhutan Massif Central Paleomagnetism Cosmogenic exposure dating Glacial geomorphology Beryllium-10 Late Pleistocene glaciation Gabon Lava flows Out-of-sequence thrust Little Ice Age Aubrac Active fault Denudation rate Landscape evolution Antarctic Cold Reversal 3He Chlorine-36 26Al Moraines Erosion Moraine Dating Cosmogenic nuclides 10Be Weathering Denudation rates 10Be cosmogenic nuclide Cosmic-ray exposure dating Mongolia Cosmogenic nuclide dating Cosmogenic dating Late Glacial Active tectonics Neogene

 

 

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