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develop ultra-high-efficiency three-junction solar cells by leveraging Japan’s expertise in thin-film growth with Oxford's capabilities in solar cell fabrication, characterisation, and modelling. We aim
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, including solution-phase ligand exchange and thin-film engineering. The second position focuses on novel infrared photodetector architectures incorporating metasurfaces and optical-field manipulation for high
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characterization of new thermometry concepts for ultra-low-temperature applications; • the implementation, optimization, and operation of thin film deposition systems; • thin film deposition and characterization
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particle physics. In materials physics, the core research fields are the physics of nanomaterials and thin films, quantum matter and quantum technologies, light-matter interaction and physics and chemistry
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record in laser-droplet interaction, droplet deformation, and fragmentation physics. Our recently published works include laser-driven sheet formation and propulsion, curvature inversion in thin films
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. Drug delivery systems Perform various methods for polymer self-assembly (dialysis method, thin film method, nanoprecipitation) Characterize the size, charge, and colloidal stability of polymer
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experiments on the group's custom-built optical microscope (30%); 2. Develop sample-integration strategies that localize biomolecules near quantum sensors, such as supported lipid bilayers, thin atomic-layer
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surface chemistry, including solution-phase ligand exchange and thin-film engineering. The second position focuses on novel infrared photodetector architectures incorporating metasurfaces and optical-field
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on metal/semiconductor surfaces and interfaces is focused on surface structures; metal thin films, and organic crystalline layers, using experimental techniques such as scanning tunneling microscopy and
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of Department of Functional Surfaces and Interfaces is thin-film fabrication, with strong expertise in the controlled synthesis, deposition, and engineering of functional thin layers and interfaces. Through its