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- Wydział Matematyki Fizyki i Informatyki UG
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dimensions offer a paradigm-shifting approach to photonic systems, enabling the study of high-dimensional lattices physics using low-dimensional photonic systems. Our research combining quantum physics and
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Physics; X-ray Spectroscopy; Electronic Structure; Ultrafast Dynamics , Condensed Matter Theory , Hard Condensed Matter Theory , High-temperature superconductivity , Quantum Condensed Matter Theory
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familiarity with high-performance computing environments Experience with quantum programming (e.g., Quantum annealing, Qiskit, etc.) Strong motivation for interdisciplinary research and teamwork Pronounced
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29 Dec 2025 Job Information Organisation/Company Wydział Matematyki Fizyki i Informatyki UG Research Field Physics » Quantum mechanics Computer science Researcher Profile Recognised Researcher (R2
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structures for single photon emitters, a key component of the future quantum technologies that will revolutionize society. He/she will develop nanostructures by molecular beam epitaxy (MBE) and will perform
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by ARPES, pursue scalable wafer-scale moiré epitaxy, develop epitaxial superconductors for quantum computing and integrate machine learning for automated high-throughput MBE. We are particularly
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by ARPES, pursue scalable wafer-scale moiré epitaxy, develop epitaxial superconductors for quantum computing and integrate machine learning for automated high-throughput MBE. We are particularly
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transistors to solve some of society’s most pressing computational challenges. Silicon-based approaches to quantum information processing offer advantages for scaling such as high qubit density, record qubit
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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