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elements to optimise performance in S/TEM. It is located on the Clayton Campus in a dedicated electron microscopy building, specifically designed to provide exceptional mechanical, thermal and electro
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: Investigate properties such as magneto-optical effects and electro-optical effects in low-dimensional materials to control the optical transmission phenomena in topological photonic crystals. Research methods
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large superconducting electro-magnets (up to 1 Tesla); • Mentoring graduate students; • Spearheading the development and fabrication of chips that combine superconducting circuits and rare-earth
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of superconducting circuits in state-of-the-art systems; Operating dilution refrigerators (Bluefors LD400); and large superconducting electro-magnets (up to 1 Tesla); Mentoring graduate students; Spearheading