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Field
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elements like Physical Unclonable Functions (PUFs) and True Random Number Generators (TRNGs) to secure hardware components. Embedded Trust Protocols: Design protocols that establish and maintain trust within
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behaviour as the temperature drops, combining quantum mechanics, large-scale molecular dynamics, and deep learning. Work with world-leading researchers at Warwick and the Max Planck Institute for Sustainable
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Electronics, will use computational simulations to study how thin films form during flowable chemical vapor deposition (FCVD), a process used to build advanced semiconductor devices. Unlike traditional CVD
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, including in liquids. Combining quantum mechanics and atomic simulation with AI-driven sampling techniques, you will determine terahertz and Raman spectrograms to directly compare to measurements obtained in
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resolution. By combining quantum-mechanical modelling, tomographic reconstruction, and data-science methods, the project will reveal how skyrmions interact with defects, helping to design the next generation
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rigorous theoretical framework to interpret the measurements is still lacking. This project addresses this gap by combining quantum mechanical calculations with continuum micromagnetic theory to bridge
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individual atomic sites. Topological defects are central to modern condensed-matter physics, underpinning phenomena ranging from superconductivity to superfluidity, yet they are rarely accessible as individual
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Research theme: Analytical Chemistry, Laser Physics, Materials Characterisation How to apply: uom.link/pgr-apply-2425 This 3.5-year PhD studentship is open to Home (UK) applicants and EU students
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opportunity to join the Emerging Technology and Materials research group within the School of Mathematics, Statistics and Physics. You will carry out research as part of a team of researchers working
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Research Assistant/Associate in Photonics Integration of Graphene and Related Materials (Fixed Term)
-dimensional semiconductors. The post holder will investigate the large area production of graphene, BN, MoS2 and other layered materials, optimise their transfer process in view of their application in energy