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lasers with high-average and high-peak power Building of optical cavities Running existing simulation codes in Julia and processing their results. Helping to develop new models and algorithms to simulate
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ML to interpret or guide experimental work. High-performance computing (HPC) and data management for large-scale materials datasets. KEY SELECTION CRITERIA Join us if you have: Doctorate degree from a
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nonlinear, ultrafast, and integrated photonics. Develop predictive theoretical and computational models for optical materials and photonic devices. Perform numerical modelling and simulation of optical
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advanced bioimaging (including super-resolution, confocal and electron microscopy), genomics, proteomics, metabolomics, high-performance computing and field research. We promote research at the interface
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maximise graphite lifetimes under irradiation, in unfamiliar AMR gaseous and liquid coolants. This post directly supports the Graphite Selection & Design programme, by developing and performing the novel
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(in)organic chemistry, our lab benefits from dedicated new gloveboxes, HPLC instruments, microwave synthesizer and high-throughput experimentation setups. Additionally, group members have access
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for pyrolysis, with particular emphasis on poultry waste as a sustainable energy resource. The role will involve experimental investigation, feedstock characterisation and performance assessment to determine
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Postdoctoral Researcher in ML for Dynamical Systems Representation, Prediction, and State-estimation
models. You will also have opportunities to contribute to open-source computational tools and datasets, teach master-level courses, and advise doctoral students. You will closely collaborate with Prof
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, focusing on high-fidelity none-nearest neighbour entangling gates while addressing hardware overhead and thermal load in superconducting quantum circuits. The successful candidate will develop new
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duties of the post include: Conduct in-depth simulations and analysis to model and understand the performance of the Diamond-II accelerators for both single and multi-particle effects; develop and apply