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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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contributions (local moments, exchange and magnon-mediated channels, interfacial and non-adiabatic effects) not captured by conduction-electron transport alone. Derive the corresponding analytical expressions
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of hybrid memory concepts such as light-controlled multiferroics and voltage-driven magnetic memristors. A central objective is to enhance energy efficiency during write and read operations, while moving
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