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Field
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near-field optical microscopy, investigating molecular vibrations, phonons and unusual light–matter coupling regimes. Depending on the candidate’s interests, there will also be opportunities to develop
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-frequency characterisation. Investigate and minimise measurement artefacts associated with grounding, shielding, impedance, parasitic effects, noise and signal integrity. Characterise and compare different
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chemical interactions. Of particular interest will be to develop accurate MLIPs that can describe the finite temperature dynamics of the particles and their vibrational spectral response, to better correlate
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to cases with low signal-to-noise ratio and low-power operation. A first research direction will focus on investigating innovative energy harvesting techniques aimed at powering sensors without the use
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and ultra-stable Fabry-Perot cavities. This platform ensures the possibility to measure phase noise and frequency stabilities of optical signals in the 10-16 range and below. The team is a first-circle
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trade-offs between bandwidth, noise, linearity, power, and cost. Contribute to scalable electronic solutions for future AI-driven optical interconnects. Design, implement and characterize the most
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vibration training combined with transspinal direct current stimulation (tsDCS); conducting neurophysiological experiments under the supervision of the project manager; assisting in the organization
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Department. About the project TrainGate uses trackside inspection portals to monitor passing trains at operating speed. Images, acoustic and vibration signals, and identification data are combined to detect
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the integration of advanced sensing technologies, digital twins, and Internet of Things (IoT) infrastructures. In acoustics, monitoring technologies have traditionally focused on environmental noise monitoring and
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structural systems and ULS / SLS design concepts Experience in structural dynamics and/or vibration analysis is an added asset Familiarity with finite element modelling (e.g. ABAQUS) and probabilistic methods