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photonics, and nanophotonics. Develop and apply analytical models for light scattering phenomena in photonic structures. Perform numerical simulations using tools such as Lumerical FDTD and COMSOL
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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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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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enabling ICFO to protect, structure, and commercialize its intellectual assets in an increasingly complex deep-tech landscape. The position will report directly to the Head of KTT and will work in close
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glass structuring is very welcome. The successful candidate will contribute to both technical innovation and Pilot Line development in collaboration with academic and industrial stakeholders. Key
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to define and optimize test structures, contribute to Test Design Kits (TDKs), and implement Process Control Modules (PCM). Analyze and validate PIC performance, prepare structured testing reports, and
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photosynthetic membranes. Specifically, pump-probe ultrafast nanoscopy of transport in model OPVs and light-harvesting complexes. Specifically, advance structured excitation methods for low light level exciton
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materials and structures characterization, such as profilometry, optical microscopy, SEM and AFM. Perform micro- and nano-fabrication activities, including thin film deposition, spin coating, reactive ion