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circuits in thin-film lithium niobate (TFLN) [Zhu2021] and tantalate (TFLT) [Powell2024]. Using the ultrafast Pockels effect in TFLN/TFLT, you will build high-speed cavity-based components [Larocque2024
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Job Description We are now advertising a new position at DTU Physics for the second half period of our project UltraBat - Capturing Ultrafast Electron and Ion Dynamics in Batteries - generously
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-leading infrastructure, will be available to underpin the proposed project (e.g. 2DLC-ESI/Q-ToF MS/MS with ion mobility source, QToF-GC-MS, 600 MHz NMR, twin-screw extruders) and result in an unprecedented
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thin-film lithium niobate for cluster state generation. In common for the three projects: Develop new quantum computing protocols using CV states of light and hybrid detection technologies. Plan
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characterization and in situ studies of hard carbon materials for sodium ion batteries. In the project you will work together with another postdoc working on biochar pyrolysis, electrochemical and structural
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, C. & Rogge, S. Millisecond electron spin coherence time for erbium ions in silicon . arXiv:2307.10021 (2023). [Gritsch2025] Gritsch, A., Ulanowski, A., Pforr, J. & Reiserer, A. Optical single-shot
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(e.g. 2DLC-ESI/Q-ToF MS/MS with ion mobility source, QToF-GC-MS, 600 MHz NMR, twin-screw extruders) and result in an unprecedented cross-disciplinary competence to answer key research questions in
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(e.g. 2DLC-ESI/Q-ToF MS/MS with ion mobility source, QToF-GC-MS, 600 MHz NMR, twin-screw extruders) and result in an unprecedented cross-disciplinary competence to answer key research questions in