M/F Doctorate : "In situ cosmogenic nuclides (10Be, 41Ca, 26Al, 36Cl, 21Ne) in the geological debris of basal ice to constrain the last disappearance of the ice sheets”.

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Centre de recherches pétrographiques et géochimiques

VANDOEUVRE LES NANCY • Meurthe-et-Moselle

  • FTC PhD student / Offer for thesis
  • 36 months
  • BAC+5

This offer is available in English version

This offer is open to people with a document recognizing their status as a disabled worker.

Offer at a glance

The Unit

Centre de recherches pétrographiques et géochimiques

Contract Type

FTC PhD student / Offer for thesis

Working hHours

Full Time

Workplace

54501 VANDOEUVRE LES NANCY

Contract Duration

36 months

Date of Hire

19/10/2026

Remuneration

2300 € gross monthly

Apply Application Deadline : 29 September 2026 23:59

Job Description

Thesis Subject

We open a 3 years PhD position at the Centre de Recherches Petrographiques et Géochimiques (CRPG, CNRS, Université de Lorraine, Nancy, France), mainly in the framework of the ERC Synergy Green2Ice project (2023-2029). This is a full-time position based at CRPG Nancy (supervision P.-H. Blard, pierre-henri.blard@univ-lorraine.fr), with a non-negligible period of time that will be spent in other European institutions for tight collaborations: Niels Bohr Institute of Copenhagen and Denmark Technical University (Danemark) and Université Libre de Bruxelles (Belgium, coll. F. Fripiat).

The main task of the PhD will be to get new key temporal constraints (duration and age) on the last partial deglaciation episodes of the Greenland (Green2Ice ERC project) and Antarctica ice sheets (ANR ToBe and Beyond EPICA H2020 projects) by using in situ cosmogenic nuclides of various half-lives (10Be, 26Al, 36Cl, 21Ne, possibly 41Ca) measured in the geological debris of the basal sections of the Greenland ice cores. The samples will be processed at the IRISS analytical platform of CRPG Nancy for 10Be, 26Al, and in the noble gas platform for 21Ne isotopes, while 36Cl will be undertaken in collaboration with I. Schimmelpfennig (CEREGE, Aix-en-Pce) and 41Ca in collaboration with Prof. Lu (China). Since there is not a unique solution to convert these isotopic ratios into past exposure scenario, the PhD student will perform forward numerical modeling to explore the most plausibile paleo-exposure scenarios, incorporating the luminescence data (OSL and IRSL) that are now obtained on the same geological ice core material analyzed in the frame of the Green2Ice project (Carlos ORTIZ, PhD 2024-2027, DTU Denmark, and Trine FREIESLEBEN Post Doc 2024-2027, DTU Denmark, Kristina THOMSEN, DTU Denmark). Luminescence dating and in situ cosmogenic nuclides are complementary methods because the former provide the age of the last deglaciation, will the later provide a maximum age and constrain the duration of this exposure.
The main targeted ice core basal material, will be: NewGRIP (drilling scheduled in 2026 and 2027), EastGRIP, NEEM and Camp Century as a test (interlab comparison and new isotopes in complement to the work of Christ et al., 2021; 2023) for Greenland (ERC Green2Ice project), and Byrd and Beyond Epica cores for Antarctica (ANR ToBe and Beyond EPICA H2020 projects).

This PhD will also have as a secondary side project, the characterization the geological nature of the debris incorporated in the basal ice of the Antarctic core, developing a variety of analytical methods (mineralogy, geochemistry) to characterize the formation age and the provenance of this material, in tight collaboration with the others scientists of our group working on the same material, notably Louise CRINELLA (PhD 2024-2027 CRPG Nancy).

Your Work Environment

Work mainly based at CRPG Nancy, France.

PhD mainly funded by the ERC SYnergy Green2Ice (2023-2029).

Expect mobilities: ULB Brussels, NBI Copenhagen, Greenland for sampling and collaboration.

Constraints and risks

• Master degree degree in Earth sciences, preferentially in paleoclimatology and/or geochemistry.
• Ability to analyze and interpret complex data using numerical modeling
• Experience in measuring and developing the use of cosmogenic nuclides is an asset (but not mandatory).
• Strong written and oral communication skills in English
• Capacity to work in a large international team with a large variety of specialists
• Accept mobility to work far from Nancy for several weeks/months

Compensation and benefits

Compensation

2300 € gross monthly

Annual leave and RTT

44 jours

Remote Working practice and compensation

Pratique et indemnisation du TT

Transport

Prise en charge à 75% du coût et forfait mobilité durable jusqu’à 300€

About the offer

Offer reference UMR7358-PIEBLA-007
CN Section(s) / Research Area Earth and telluric planets: structure, history, models

About the CNRS

The CNRS is a major player in fundamental research on a global scale. The CNRS is the only French organization active in all scientific fields. Its unique position as a multi-specialist allows it to bring together different disciplines to address the most important challenges of the contemporary world, in connection with the actors of change.

CNRS

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M/F Doctorate : "In situ cosmogenic nuclides (10Be, 41Ca, 26Al, 36Cl, 21Ne) in the geological debris of basal ice to constrain the last disappearance of the ice sheets”.

FTC PhD student / Offer for thesis • 36 months • BAC+5 • VANDOEUVRE LES NANCY

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