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environment. The successful candidate will join the international project “Photonics for Quantum (P4Q)”. P4Q will establish a distributed, pan-European infrastructure for manufacturing high-performance photonic
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of strongly-correlated materials, quantum magnets, and might hold the key of high-temperature superconductivity. Investigating its low-temperature many-body phases is extremely challenging using classical
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approaches, where data storage and processing occur simultaneously at the materials level, inspired by the operation of the brain. This includes research on unconventional computing paradigms, such as
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Offer: Cutting-Edge Research: Engage in high-impact experiments in altermagnetic spintronics. International Collaboration: Collaborate with leading European experimental and theoretical groups, including