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III-V (AlGaAs or InP) semiconductors and SiN photonic platforms Strong background in nonlinear optics or integrated laser physics Experience with photonic device design (e.g., Lumerical, FDTD/FEM tools
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(photolithography, metal evaporation, etching) Experience with packaging schemes such as flip-chip bonding, anisotropic conductive film bonding and wire bonding Finite element Method (FEM) simulations (MEMS, Electro
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, using e.g. DFT or the finite element method (FEM) calculate the quantum dynamics of an emitter coupled to phonons with an open-quantum-system approach and using state-of-the-art numerical techniques
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experience related to the position Experience leading end-to-end development of microfluidic or micro-manufactured devices: design (CAD/CAM), analysis (FEM), fabrication, and assembly/sealing of small-scale
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, anisotropic conductive film bonding and wire bonding Finite element Method (FEM) simulations (MEMS, Electro-static and Quasi-static simulations) Discrete electronic design (Analog and digital design using COTS
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in a wave tank under regular and irregular waves. Develop and document high-fidelity numerical models (e.g., coupled hydrodynamic–structural models and/or FEM workflows). Develop and validate
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%). You will work on the extension of the DUNE-FEM package to support computations on GPU hardware with various types of Finite Element methods. This work is embedded in a research project considering
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circuits; design advanced magnetic components, particularly with planar PCB based or embedded inductors and transformers; conduct power circuit simulations (LTspice or similar) and FEM simulation (ANSYS
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heavy software development component. The successful candidate will perform research in the application of machine learning (ML) techniques to the finite element method (FEM) in the context of composites
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heavy software development component. The successful candidate will perform research in the application of machine learning (ML) techniques to the finite element method (FEM) in the context of composites