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Quantum Fields, Information, and Next-Generation Cosmological Probes This PhD project will investigate theoretical aspects of quantum field theory in cosmological spacetimes, with a particular focus
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This project addresses a fundamental question in digital twin development for fusion energy systems: the relative roles and limitations of physics-based models, experimental data, and AI-driven
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knowledge gaps. The project involves both linear and nonlinear dynamics modelling and analysis, as well as experimental testing. An equivalent test structure will first be constructed in the vibration
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, interpreting experimental data, and preparing technical reports and scientific publications. They will also contribute to helping to translate research findings into practical solutions for the water sector
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. These factors are critical for accurately predicting long-term material performance in fusion environments. The research will also integrate emerging experimental data from future fusion-relevant facilities
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AI approaches, including surrogate modelling and large language model (LLM)-assisted information extraction from openly available international fusion datasets and literature. Applications may be
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for more information on the selection process. Funding Details Covers full tuition, £21,805 stipend (2026/27), and an enhancement of £5,000