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of the following research topics: unconventional superconductivity, nonequilibrium systems, strongly correlated electron systems, magnetism, 2D moiré/graphene/TMD systems, and plasmonics. Successful applicants
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electron mobility transistors and graphene, but also to large band gap and low symmetry semiconductors such as Ga2O3. These materials and components lay the foundation for the next generation of high
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been applied to two-dimensional semiconductor systems such as nitride-based high electron mobility transistors and graphene, but also to large band gap and low symmetry semiconductors such as Ga2O3
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Technology (EIT) at Lund University, The Faculty of Engineering (LTH), is one of the larger departments with about 120 employees and conducts research and teaching mainly in electrical engineering and computer
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sustainable battery for thermal storage. The idea is to combine waxes obtained through pyrolysis of plastic waste streams, with ultra-conductive graphene networks, i.e., nanometer sized carbon platelets
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microscopy (SPM) to experimentally investigate the nature and properties of correlated electrons in van der Waals (vdW) systems, focusing on topological states in graphene moiré heterostructures . Candidates
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in the Mason Lab. The Mason Lab specializes in experimental studies of quantum materials, with a research focus on the electronic properties of nanoscale and correlated systems, such as graphene
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dielectric films deposited on graphene using a non-contact microwave technique ( https://dx.doi.org/10.1021/acs.jpcb.9b11622) and monolayer graphene ( https://dx.doi.org/10.1021/acs.jpcb.9b11622 ) as a