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to several aspects of the project, including: -design, development and validation of experimental optical microscopy setups -modelling and optimization of experimental parameters -adaptation and further
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on titanium. Preparation, activation, and functionalization of titanium surfaces or discs. Development of simple deposition protocols in aqueous media and optimization of experimental conditions
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, and optimizing cleanroom-based micro- and nanofabrication processes dedicated to the fabrication of these MEAs; Integrating the developed bioelectronic devices into microfluidic organ-on-chip platforms
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shuttling protocols across extended qubit arrays, leveraging multiplexed cryogenic control and readout electronics. This work is part of a close collaboration with CEA-Leti, combining state-of-the-art device
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participate in the design, fabrication, and optimization of van der Waals heterostructures and related electronic devices. The work will involve micro- and nanofabrication techniques as well as the assembly
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networks). • Compare different strategies (topology, tensor order…) to seek for an optimally compressed representation of turbulent velocity fields and of relevant operators in tensor network form. • Perform
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experimental protocols for the operation and characterization of large quantum dot arrays in silicon-based semiconductor devices. • Tune and control electron filling in one-dimensional and bilinear quantum dot
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Metasurfaces: • Develop multilayered MSs using FDTD, RCWA, or inverse design methods to achieve broadband achromatic performance (400–700 nm). • Optimize MS geometries for high numerical aperture (NA), wide
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characterization and iterative optimization to enhance device performance. The ICube Laboratory (UMR 7357) is a joint research unit under the supervision of the CNRS, the University of Strasbourg, and INSA