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Field
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the epithelial tissue and glycobiology. We use super-resolution STED microscopy, CryoET, in combination with biophysics and chemical biology, to uncover how epithelial cells organise in space and time under
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that have been identified as causes for societal and political processes and events in the Mediterranean in the first millennium CE, combining historical and archaeological approaches. The central questions
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regular arrays to probe novel quantum phenomena in strongly interacting quantum systems. The use of molecules is motivated by their rich internal structure, combined with the existence of controllable long
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develop photoluminescence and spin control capabilities, under cryogenic conditions, to probe the defects’ electronic structure and spin properties. This effort will be combined with ongoing work in the
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of defects in hBN via a combination of quantum optical and magnetic resonance techniques. This effort will be combined with ongoing work in the group on the characterisation and optimisation of the hBN
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degree programmes which ensue, combine with our large graduate school to provide a teaching experience for staff that is truly excellent. The Role Applications are invited for a Postdoctoral Research
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materials. Hands-on experience in battery fabrication and characterization. Familiarity with energy storage technologies is preferred. Associated Skills: Experience working on a project combining organic
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temporal properties: ultrabroadband supercontinua, intense sub-cycle field transients, and few-femtosecond ultraviolet pulses, among many others. We combine numerical modelling with experiments to study the