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heterostructure quantum devices Perform electrical measurements (i.e. magnetotransport) at room and/or cryogenic temperatures Participate in TEM and nano-ARPES characterisation and analysis Collaborate with project
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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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larger EIC (European Innovation Council) Challenge project. The project is focused on development of novel zinc-air flow batteries for mid- to long-term storage of electricity. This specific position is
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to nanoseconds) to obtain novel insights into the fundamental physics and chemistry of processes in materials. You will work with ultrafast X-ray experiments using synchrotrons and XFELs, with a focus on charge
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focus on charge injection, ion transfer, and structural dynamics in realistic and model systems for battery materials. The position will span experimental efforts at large scale X-ray facilities, handling
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significant experience with experimental quantum optics and cryogenics and a solid grasp of theoretical quantum optics. Position 2: Fabrication, device integration, and characterization of nanoelectromechanical
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larger EIC (European Innovation Council) Challenge project. The project is focused on development of novel zinc-air flow batteries for mid- to long-term storage of electricity. This specific position is
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integrated circuits for next-generation UOWC technologies. As a participant of the project, you will become part of a team at DTU with expertise in design, simulation, nanofabrication, characterization, and
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on developing TFLN and TFLT photonic integrated circuit (PIC) platforms for classical and quantum information processing. Our approach involves cavity-based components with electrically controllable cavity
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–microstructure–property–performance simulation platform, and (iii) a theoretical framework for design of AM-defect tolerant microstructures. The focus of the current postdoc position will be on applying all