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the key electromagnetic coupling effects between layers and enables fast prediction of their tunable response without relying solely on full-wave simulations. To create efficient adjoint-based optimization
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configuration influence hydrogen production efficiency. The project will combine plasma reactor development, plasma diagnostics, and materials characterization. Techniques such as optical emission spectroscopy
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Carlo and Molecular Dynamics simulations will also be carried out to reveal the competing kinetic pathways at the growth front. The experimental part will use multiple experimental methods, including but
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conditions are particularly suitable for detailed comparisons with high-fidelity numerical simulations. Additionally, LEGI lab has a similar reactor to that of LMFL (operational and fully instrumented
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scaled-up, optically clear model of the new dialyser. You will apply advanced techniques, specifically Particle Image Velocimetry (PIV) to resolve complex fluid flow behaviour. This role offers a unique
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SPEAR Centre: PhD in ‘Long-Range, High Bandwidth Distributed Acoustic Sensing for Fibre Optic Links’
fading, and maintain stable performance over 40–100 km fibre lengths. Perform co-simulation of optical and electronic/system-level subsystems (e.g., using Python, MATLAB, VPI). Build and characterise
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of the group by contributing to the application and writing of projects. Where to apply Website https://seuelectronica.upc.edu/en/procedures/call-for-recruitment-of-ptgas-staf… Requirements Research
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experience with electromagnetic simulation software for both optical (PIC) and microwave (MMIC) applications (Lumerical, Comsol, Tidy3D, CST, HFSS, or similar). Strong experience with optical experimentation
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(e.g., Python, MATLAB) Practical experience with laser optics, vacuum technology, cryogenics, and FEM simulations is highly desirable Proactive working style with high level of commitment in solving
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wireless systems is preferred), documented experience in fabrication and characterization of thin-film nanomaterials, including analysis of structural, optical, electrical, and surface properties, experience