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thin film deposition is strongly recommended. Knowledge in solid-state chemistry, ceramics, nanoimprint lithography processing, (photo)electrochemistry, or optical simulation (RCWA and FDTD for light
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tasks that best suit your strengths. This could involve the design, optimization, and fabrication of advanced devices using numerical methods like FDTD; taking charge of spectroscopic experiments
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responsibility for our unique GPU-accelerated 3D FDTD software suite and extending its capabilities Modelling the effects of atmospheric turbulence fields Software development (3D modelling and coding in Python, C
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supervising research students. Programming skills for experimental settings (e.g. data acquisition and analysis, device modelling) Experience carrying out device simulations in FEM or FDTD software e.g. COMSOL