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possess translational symmetry, the role of structure and symmetry in glasses is not established. This research programme involves the development of new x-ray and electron diffraction-based methods
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are supported by quantum mechanical theoretical formalisms. Our fundamental findings yield promise for future applications in electronics, optoelectronics, spintronics, information processing and storage, sensing
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research impact on a breadth of photonic applications, including optical and quantum imaging, communications, displays, and sensing. I supervise a broad range of projects in nanophotonics. As a subgroup
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projects that involve data analysis, the application of artificial intelligence, the development of new detection techniques, and the exploration of new experimental methods through collaboration with our
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catheter probe based magnetic sensors for biological applications. To perform quantum sensing, we optically read-out the NV centre's electron spin state to quantify the perturbing effect of nearby
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person entitled to stay in Australia, or to enter and stay in Australia, without any limitation as to time. Applications are due by Wednesday 3 July 2024, 11:55pm AEDT If you are interested, please contact
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I supervise a wide range of projects at the intersection of photonics and nanotechnology, investigating how we can efficiently control light on the nanoscale. Applications are in areas such as
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" "Growth and characterisation of 2D topological materials" "Realizing new intrinsic magnetic topological insulators for lossless transport applications" "Understanding the electronic properties of twisted 2D