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will enable faster, more noise-robust or low-consumption logical gates. The objective of the PhD thesis is to study this issue theoretically using different optimal control techniques. We are looking
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resolution. Bridging the gap between current classical SAW sensors and quantum sensors lies in the development of an efficient and integrated transduction. The objective of this thesis is thus to extend
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of computational materials science, condensed matter theory and device physics applied to spintronics. The aim of the PhD project is to identify and characterise useful 2D materials for various spin-orbitronics
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the framework of the ERC StG project ATOMQUANT, is to extend this technique towards atomic force microscopy. Thus, our main goal is to create a new solid-state architecture for magnetic sensing and quantum
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frequencies. Possible phenomena may involve multiferroicity, superconductance, quantum-criticality, or non-Hermitian phase transitions. The project is targeted at the investigation of dynamical processes
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At QuSpin, our theory activity focuses on developing models for the utilization of spins and other quantum degrees of freedom in magnetic materials, superconductors, and in topological states of
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At QuSpin, our theory activity focuses on developing models for using spins and other quantum degrees of freedom in magnetic insulators, topological insulators, and superconductors. The candidate
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At QuSpin, our theory activity focuses on developing models for the utilization of spins and other quantum degrees of freedom in magnetic insulators, topological insulators, and superconductors