The Max Planck Institute for Marine Microbiology is a research institute of the Max Planck Society. It was founded in 1992 in the State of Bremen and employs around 200 staff members. In close collaboration with numerous university and non-university research institutions, we explore the diversity and function of microorganisms in the ocean and their interactions with their environment. Scientists from all over the world, engineers, technicians and administrative staff together make an important contribution to global marine and environmental research.
In the Department of Ocean Biosphere Dynamics, we are looking to fill a position as
Scientific Programmer (m/f/d)
Biogeochemical Model Development and Integration
The department investigates the dynamics of the ocean carbon cycle, its variability and predictability, and its role in the Earth system through climate-carbon cycle feedbacks operating across timescales from days to millennia. A central objective is to improve the representation of marine carbon, nutrient cycling and microbial processes in Earth System Models while increasing spatial model resolution to capture key physical and biogeochemical dynamics in the ocean.
To support this mission, we are seeking different Scientific Programmers (m/f/d) to drive the next generation of ocean biogeochemical modelling in Earth System Models. The successful candidates will contribute to the development, integration, and performance optimization of a state-of-the-art modelling framework, enabling increasingly sophisticated representations of marine biogeochemical processes and unprecedented high-resolution numerical experimentation. Together, they will help ensure that the modelling infrastructure combines scientific excellence with cutting-edge software engineering, delivering robust, efficient, and scalable performance on current and future exascale computing platforms.
The successful candidate will be responsible for maintaining and advancing the ocean biogeochemical model code based on the HAMburg Ocean Carbon Cycle model (HAMOCC), which is part of the ICON Earth system modeling framework, ensuring that scientific developments arising from ongoing research are robustly implemented, documented, tested, and integrated into the model's main development branch.
A particular focus of the position will be a dedicated project to develop and incorporate new model components enhancing the representation of biological complexity and microbial processes in HAMOCC. Key responsibilities include integrating and testing newly developed code, maintaining high standards of software quality, reproducibility, version control, and documentation, supporting the transition of research developments into the operational model framework.
The role involves close interactions with researchers, research students and model developers to translate scientific advances into reliable and maintainable model code. The successful candidate will also have the opportunity to contribute to peer-reviewed publications and present research outcomes at scientific conferences.
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