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The project will create spatiotemporal polaritons through ultrafast light–matter interactions in engineered metamaterial systems. The doctoral candidate will explore wide-bandgap semiconductors and high-quality
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to seconds. This will reveal how these proteins work at the molecular level and provide insight into mechanisms that are central to membrane protein function. A key part of the project will also be to develop
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PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
The project will develop ultrafast optical logic and memory concepts using spatiotemporal metamaterials. The doctoral candidate will design metamaterial structures coupled to quantum emitters for ultrafast
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energy technology, applied optics, electronics and medical technology. The department hosts The Intelligent Human-Buildings Interaction (IHBI) Lab an interdisciplinary research hub pioneering novel
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to the development of next-generation approaches for marine environmental assessment and sustainability, working at the interface of environmental systems science, marine technology, and data-driven research within
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infection biology. Experience with the operative system Linux. Prior virology experience. We are looking for a motivated and curious candidate who is eager to explore scientific questions and develop as an
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involve a combination of computational and experimental approaches including mammalian tissue culture, genetic engineering, proteomics and animal infection models. A person who is employed as a PhD student
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science with a focus on bioinformatics. We offer an international, stimulating, and collaborative research environment where your scientific career development is promoted. The project aims to track strain