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/optics within, e.g., medical sciences or electro-optics. We have a strong tradition for collaborative research. What we offer The successful candidate is offered: access to a well-developed, shared
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/optics within, e.g., medical sciences or electro-optics. We have a strong tradition for collaborative research. What we offer The successful candidate is offered: access to a well-developed, shared
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and synchrotron-based experiments to study the dynamics of light-induced phase transitions on atomic and nanoscopic length-scales driven by optical and phononic excitation. The focus will be
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for light trapping in thin-film solar cells .” You will become part of an enthusiastic team working closely with collaborators at DTU Physics and DTU Nanolab to advance neural network-based methods
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. Responsibilities and qualifications You will be responsible for conducting experiments in the conversation lab, and analyzing and modelling turn-taking dynamics, and bodily signals such as bodily and eye movements
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adjustment and plate tectonics. The analysis will encompass both network wide and local analysis using data from Greenland GNSS Network (GNET). You will target specific regions where there can be an unresolved
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for fundamental optomechanics and practical gas sensing applications. The postdoctoral fellow is expected to contribute to the design, fabrication and optical/structural/mechanical characterization of “string
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thereof, with the intention to study the formation of exciton polaritons in two-dimensional materials interacting with optical nanocavities. We welcome candidates with a strong background in computational
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and workshops. Collaborate with researchers from other institutions within our various collaborative grants and networks to advance the overall project goals. We expect you to: be motivated and