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Field
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role The successful candidate will contribute to a research project at the intersection of engineering (pre-stressed concrete bridges), material science (Cholesteric Liquid Crystal Elastomer), sensing
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: Define the critical engineering requirements (optical pulse duration, terahertz crystal materials in cryogenetic environments, signal-to-noise ratio optimization, entanglement witnesses and verification
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decoherence and quantum noise. The successful candidate will perform structure characterization for quantum device applications, such as assessing the structure integrity of crystals and films, probing defects
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does not involve single-crystal synthesis. This project involves intensive international collaboration with multiple research groups. Your profile You hold a PhD in physics, chemistry or materials
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. Research will involve growth of single crystals and measurements to understand their structural and physical properties including magnetism and thermal transport, as well as helping to identify new magnetic
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design (TCAD) tools should operate at the ab-initio and quantum mechanical level. Moreover, they should capture the interplay between electrical (voltage-induced currents), thermal (excitation of crystal
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topological functions and high-performance magnetic functions based on materials synthesis. We will develop novel intermetallic compounds and alloys using singe crystal growth and rapid quenching methods, and
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scientific and industrial applications. Our favourite nonlinear system is hollow waveguides (such as photonic crystal fibres and capillaries) filled with gases, liquids, and plasmas. Our interests in
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does not involve single-crystal synthesis. This project involves intensive international collaboration with multiple research groups. Your profile You hold a PhD in physics, chemistry or materials
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to light and temperature) and be proficient in all purification tools used in organic chemistry (distillation, crystallization, separation). Experience with near-field analysis techniques would also be