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We are seeking a postdoc to co-design efficient and realistic simulation algorithms for noisy quantum circuits in superconducting hardware, combining quantum modeling with hardware-aware performance
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. A copy of your PhD thesis Use the button at the foot of the page to reach the application form. A background check may be conducted as part of the application process. Please note: The applicant is
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. A copy of your PhD thesis Use the button at the foot of the page to reach the application form. A background check may be conducted as part of the application process. Please note: The applicant is
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, fatigue, creep etc.), other AM technologies (PBF-EB, DED), in-situ process monitoring during PBF-LB (optical tomography, melt pool monitoring, etc.), thermodynamic simulations, advanced materials
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of cell factory engineering. Develop software tools that enable programmatic interaction between large language model agents and metabolic models, enabling automated simulation, interpretation, and
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team, where PhD students and postdocs work alongside senior scientists to shape the future of photonics. The Integrated Solid-State Photonics Lab is a newly established research group within
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, creep etc.), other AM technologies (PBF-EB, DED), in-situ process monitoring during PBF-LB (optical tomography, melt pool monitoring, etc.), thermodynamic simulations, advanced materials characterisation
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focused on modeling and simulations of turbulent mixed-phase clouds. This interdisciplinary project encourages collaboration with experts in atmospheric physics. The successful candidate will contribute
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to work on building the next generation of quantum processors based on superconducting circuits. To achieve this ambitiuous goal we have a variety of projects related to: Simulation, design and
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design. One of our group's goals is to create efficient surrogate models that reduce the computational cost of MD simulations by several orders of magnitude. Notable examples of our work in this area