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transport in 2D materials and van der Waals heterostructures. In particular, we will explore the optimal reading of magnetic information via non-linear effects. The project also foresees the integration
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The research topic encompasses the interplay between electron and spin transport in 2D materials and van
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engineer position to an experienced scientist (>PhD) with demonstrated expertise in the integration of 2D-materials into integrated photonics technologies, especially where these materials interface with
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this short-term project we shall use active learning to accelerate the training of deep learning algorithms for optimising 2D material van der Waals (vdW) structure discovery. The goal is to make model
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applied to materials design, guiding search over candidate 2D materials/heterostructures toward target properties relevant to our ERC context (AI-assisted materials and device simulations). The outcome is a
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heuristic optimisation to explore and improve materials candidates-especially 2D/vdW structures-for target electronic/spintronic properties. The postdoctoral researcher will lead the optimisation component
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Electronic Materials and Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene and other 2D materials such as MoS2
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coupling in graphene by proximity effects in van der Waals heterostructures composed of graphene and 2D semiconducting and ferroelectric layered materials. Main Tasks and responsibilities: The research will
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://jobs.materials.imdea.org/apply/form?id=78029 Requirements Specific Requirements PhD in materials science, mechanics of materials or simialr discipline. Fluent English (written and spoken) LanguagesENGLISHLevelExcellent
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the field. Your tasks Design and fabrication of microfluidic devices and/or microreactors Materials processing in microfluidic environments. The candidate needs to have expertise in nanomaterials