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Funded PhD studentship in AI-assisted materials discovery at the UK National Epitaxy Facility School of Electrical and Electronic Engineering PhD Research Project Competition Funded UK Students
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Jooss. Your tasks and duties: You will grow epitaxial thin films of a transparent conducting perovskite oxide and its oxynitrides on various perovskite oxide substrates using a hybrid molecular beam
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at CRHEA (Valbonne, 06). It will focus on the epitaxy of these new structures using MBE and MOVPE techniques and their structural and electrical characterizations which will be validated by the partners
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reproducible processes, which is rarely achieved in practice. In this context, we propose to exploit the potential of molecular beam epitaxy (MBE) assisted by coupled in situ and real-time characterization
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group, we synthesise these functional nanomaterials from the bottom-up, using protocols of molecular beam epitaxy and on-surface supramolecular chemistry. We study these systems by means
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-reciprocity of spin waves Angular Momentum of Magnons Magnetically doped Transition Metal Dichalcogenide Thin Films via Molecular Beam Epitaxy Modeling of a magnonic diode based on spin-wave non-reciprocity in
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grow new materials by molecular beam epitaxy, or create heterostructures of materials by exfoliating and stacking atomically thin layers from crystals, and fabricate nanoscale electronic devices
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you to apply. In this call, we are particularly recruiting PhD candidates for the following research topics: Project A: Epitaxy and nanofabrication of III-V semiconductor emitters in nanocavities
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science, nanotechnology or similar, a good understanding of quantum mechanics, knowledge on semiconductor physics and characterization techniques, experience in epitaxy of nitrides by MBE and practical
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physics and characterization techniques, experience in epitaxy of nitrides by MBE and practical knowledge on AFM, SEM or other charaterisation techinques will be an asset Knowledge about physics of