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environment at the intersection of magnetism, spintronics, and unconventional computing. They will work closely with researchers across physics, materials science, and computer science, gaining experience in
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research group to investigate how molecular chirality governs spin-dependent electron transport and reactivity at surfaces and interfaces, with applications spanning spintronics, enantioselective
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highly appreciated: background in experimental research in spin qubits, magnetic materials, spintronics. We strongly encourage candidates from all backgrounds and identities to apply. We believe diverse
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measurement outcomes. Excellent Collaboration and communication skills Optional but highly appreciated: background in experimental research in spin qubits, magnetic materials, spintronics. We strongly encourage
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. Applicants with diverse interests and backgrounds, including quantum condensed matter theory, topological properties of condensed matter systems, spin qubits, magnetism, spintronics, spin-related phenomena in
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magnetic properties, enabling completely new interface functionalities in future spintronics. The project combines elements from physics (magnetic and topological properties), chemistry/material technology