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, despite highly non-convex objective functions, typically avoids local minima problems. • Analyse how architectural designs such as residual units and attention mechanisms contribute to overcoming local
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in conventional imaging, and to access a complementary ‘dark-field’ signal that originates from tiny sample structures. We do this by designing and implementing novel experimental set-ups and
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My work focuses on experimental research in quantum sensing and quantum microscopy using the nitrogen-vacancy (NV) centre in diamond. In particular, we are interested in applying quantum sensing
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I am an experimental particle physicist that works on the search for phenomena that are beyond our current theoretical understanding in terms of the Standard Model of Particle Physics. The research
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I supervise computational projects in electron microscopy imaging for investigating materials at atomic resolution. Some projects centre on analysing experimental data acquired by experimental
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I supervise projects in particle physics. My main emphasis is on phenomenology, comparison of predictions with experimental measurements. I follow developments in flavour physics: weak decays
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, it has implemented Carbon Border Adjustment Mechanism, a tool to impose carbon tax on imported goods based on a calculation of carbon emission and pricing in production of goods and extraction of raw
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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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determine optimal operating conditions through iterative testing and experimentation. Through this Project, Tronox aims to demonstrate its commitment to sustainable development, resource efficiency, support
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between theoretical and computational high-energy physics. The research contributes to the world-leading PYTHIA Monte Carlo Event Generator, which serves as the baseline for the majority of experimental