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of HTS thin films and hybrid heterostructures, nanofabrication of superconducting architectures, and advanced physical characterisation using transport, magnetic, and structural techniques. While
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at the Department of Physics are materials physics, nuclear physics and particle physics. In materials physics, the core research fields are the physics of nanomaterials and thin films, quantum matter and quantum
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of nanomaterials and thin films, quantum matter and quantum technologies, light-matter interaction and physics and chemistry of nanoparticles. Nuclear physics concentrates on nuclear astrophysics, nuclear structure
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the nanofabrication of microdevices (using techniques such as thin film deposition, electron-beam lithography and etching), and their electrical transport characterization. A major objective is to explore
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on artificial 2D heterostructures. It will also involve the nanofabrication of microdevices (using techniques such as thin film deposition, electron-beam lithography and etching), and their electrical
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join our group and help us developing thin film solar cells under the R2U Technology Agenda from the PRR framework. We foster a collaborative and innovative environment where a team from a diverse
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basic and application-related research previous experience with magnetron sputtering, growth of thin films, epitaxy, power electronics, or III-nitride based semiconductor materials and/or devices, as
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an independent project. Conducting wet or dry lab work in a research laboratory, preferably in an independent project. Background in thin film deposition and characterization, fabrication of structures, device
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basic and application-related research previous experience with magnetron sputtering, growth of thin films, epitaxy, power electronics, or III-nitride based semiconductor materials and/or devices, as
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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