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Institute PhD Research Project Directly Funded UK Students Prof David Fletcher, Prof Paul Richmond, Prof Roger Lewis Application Deadline: 14 May 2026 Details This project is part of cohort 3 of the EPSRC
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concerns, particularly due to its slow renewability and the ecological impacts associated with peatland degradation and greenhouse gas emissions. In parallel with broader efforts to identify more sustainable
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graduate-level class of “CMOS Electronics for Biological and Molecular Sensing” as well as mentoring PhD, master, and bachelor students. Living cells such as neurons can be viewed as biological systems with
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parameters. In parallel, the candidate will gain in-depth knowledge of time-modulated photonic media, nonlinear optics, adjoint-based optimization strategies for high-dimensional inverse design, and realistic
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explored in seven parallel and complementary doctoral projects at three Swedish universities. In this way, the doctoral students will receive an interdisciplinary education in the related subjects through
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under a single or otherwise limited set of discrete tuning parameters. In parallel, the candidate will gain in-depth knowledge of time-modulated photonic media, nonlinear optics, adjoint-based
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system-level performance metrics (efficiency, bandwidth, angular response, and robustness). In parallel, the candidate will gain in-depth knowledge of analytical modeling techniques and adjoint-based
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conducted on surface sediments recovered from the study area by the CONRAD expedition and currently stored at Lamont Doherty (USA). The PhD candidate will participate in the first planned cruise; in
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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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skills in general and a taste for meticulousness are essential. In parallel, interest for soft matter concepts and modelling will be of help to interpret the data. Experience in data analysis (including