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optical communication networks and systems, as well as machine learning, computer vision and compressing digital videos. Become a part of our team and join us on our journey of research and innovation! Be
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such as flu vaccination, eye test, ergonomics advice at the workplace Please get in touch with any questions Michael Fichtner SynTra Applikationslabor michael.fichtner@mdc-berlin.de
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must have the following: • Ph.D. in physics or optics with a focus on quantum techniques • Excellent track record of research achievements and publications in top-ranked journals. • Strong motivation
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(especially LLMs / VLMs) Human-AI Interaction Or Bring-your-Own research topic Who We Are Looking For: We seek highly motivated and talented individuals passionate about AI, Human-Computer Interaction, Eye
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spoken and written (comparable to Level B2 or better) experience with magneto-optical microscopy is desired research experience abroad within a Postdoc position is desired Additional Information Benefits
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Max Planck Institute for Demographic Research (MPIDR) | Rostock, Mecklenburg Vorpommern | Germany | 13 days ago
, virtual twins for improving public safety, and "corrective optics" for biased digital trace data, the network aims to push the scientific frontier and explore how automation and AI reshape the social fabric
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At the Leibniz Institute of Atmospheric Physics (IAP), a full-time position (40h/week) in the Department “Optical and Rocket Soundings” is available as Postdoc, AMILIS project (f/m/d) The position
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science field Research background in experimental attosecond science Experience with X-ray techniques and/or FEL science is an asset Experience with ultrafast optical lasers is an asset For additional
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uniaxial creep tests (tension, compression) and comparing the results Characterization of the microstructure–property relationship using optical microscopy, SEM and EBSD Correlation of microstructure and
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correction and fault-tolerance - Quantum optics of trapped ions and Rydberg atom arrays - Numerical tensor network techniques - Topological order and (de)confinement in string-net models - Quantum field theory