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Field
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centred on the development and application of wearable Magnetoencephalography (MEG) using Optically Pumped Magnetometers (OPMs). The successful applicant will join established teams of world leading
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attention will be given to interlayer interactions, stacking effects, and their impact on charge transport and optical behavior. The project aims to explore these systems as next-generation functional
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An eye for detail and a high level of initiative Starting salaries will depend on candidate’s qualification and experience. Candidates are expected to start March 2026. Review of applicants will continue
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CIDER formalism for designing non-local XC functionals, with an eye toward applying the resulting functionals to currently intractable problems in catalysis and energy storage materials. Effort is aimed
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computing (HPC) for large-scale data analysis. Experience with seismic tomography, full-waveform inversion, or other advanced imaging techniques. Familiarity with modern data processing workflows and software
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and voids; maintain cleanroom/tool best practices. Characterize materials and interfaces using optical/profilometry, SEM/TEM, surface chemistry, and electrical IV; translate data into process
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) degree in nanophotonics, EUV technology or related field Familiarity with Maxwell’s equation, nanophotonic simulations and optical measurements Good written and oral communication skills Proficiency in
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new synthetic routes for unique nanocrystal compositions to in-depth characterization of electronic, optical, magnetic, and thermal properties of nanomaterials. The Harvey Lab is seeking a postdoctoral
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the creation of new probes for sensing and imaging, the advancement of optical microscopy techniques, mass spectrometry, and NMR spectroscopy. Applicants will have a PhD or equivalent degree with postdoctoral
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emotion to the project through thoughtful features and initiatives. Bring both a strategic eye and a depth of craft in brand and communications design to the project teams. Provide advice and guidance