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carried out by the group focuses on the discovery and control of new memory effects in nanoscale materials, including ferromagnetic, spintronic, and ferroelectric systems, as well as on the implementation
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computational methods to investigate quantum, optical, thermal and spin-dependent transport in complex materials. A central expertise of the group is the LSQUANT methodology, a suite of linear-scaling, real-space
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guided by theoretical predictions and will combine magnetotransport measurements with material growth and characterization, including MBE and angle-resolved photoemission spectroscopy (ARPES). What We
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