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- Institute of Photonic Sciences
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- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
- ICFO - The Institute of Photonic Sciences
- UNIVERSIDAD POLITECNICA DE MADRID
- Consejo Superior de Investigaciones Científicas
- DIPC - Donostia International Physics Center
- Fundació per a la Universitat Oberta de Catalunya
- Institut Català de Nanociència i Nanotecnologia
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reproducibility Perform and optimize dry and/or wet etching processes for nanophotonic structures Develop and optimize laser-based etching processes for glass micro-structuring Carry out metal deposition using e
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on techniques like EBL and fs-laser writing Prepare and manage masks for etching processes and ensure process reproducibility Perform and optimize dry and/or wet etching processes for nanophotonic structures
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of Structures with Advanced Constraints including Dynamic Phenomena, Buckling and Non Linear Scenarios Research line / Scientific-technical services: Static and dynamic analysis, design and optimization
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: Develop and simulate numerical models of damage and failure in aerospace structures, including FEA for metamaterials. Materials Design & Characterization: Study and optimize metamaterials and composites
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extensive electromagnetic modeling to optimize the waveguide structures for minimal loss, efficient confinement, and effective mode matching with external optical components. Particular attention will be
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structure, dynamics, and switching mechanisms at the nanoscale, including optical manipulation of polarization states. Design and execution of experiments demonstrating optical control of ferroelectric
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bonding rigid structures such as ASICs onto flexible polyimide-based thin-film devices. The candidate will contribute both to the development and optimization of bonding approaches for ASIC-integrated thin
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dynamics modeling and vibration reduction system construction; responsible for structural optimization and vibration analysis of precision components in high-precision orchard equipment; undertake
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Palmas de Gran Canaria (ULPGC) is seeking a Doctoral Researcher (ICP1 level) to join the research project: “Optimal Design of Multipolar Stimulation Patterns in Cochlear Implants through Numerical
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the discovery and optimization of high-performance functional materials through a fully integrated, interpretable AI platform. MAIAMI aims to establish a paradigm shift in materials science by embedding