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Field
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) in computer science, artificial intelligence, data science, applied mathematics, physics, electrical engineering, or a related field. You have a solid background in machine learning; experience with
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transplantation, nanotechnology, quantum sensing, mitochondrial medicine, and epigenetic editing. The project combines fundamental science with a clear path toward clinical translation, offering the opportunity
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responsivity and quantum efficiency, dark current, noise, linearity, uniformity and stability. You will also investigate detector integration with the overlying photonic-crystal filters, including alignment and
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knowledge? Are you technically skilled around real-world laboratory experiments, and a genuine team player? Then consider joining the Quantum Nanophysics team. Your personal sphere of influence: As a
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quantum-classical approaches. You will work closely with our researchers and international partners from academia, industry and public agencies. Specifically, you will: Review the scientific literature and
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combine ultrafast pump–push–probe experiments with sub-10 fs resolution, finite-element simulations, and quantum models extending the Tavis–Cummings Hamiltonian. The aim is to demonstrate coherent control
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nanostructures—developed for tunable Josephson junctions in quantum devices—using high-resolution transmission electron microscopy (TEM). Currently, quantum processors suffer from short coherence times due
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knowledge? Are you technically skilled around real-world laboratory experiments, and a genuine team player? Then consider joining the Quantum Nanophysics team. Your personal sphere of influence: As a
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knowledge? Are you technically skilled around real-world laboratory experiments, and a genuine team player? Then consider joining the Quantum Nanophysics team. Your personal sphere of influence: As a
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in symplectic topology, mirror symmetry, geometric topology, dynamical systems, algebraic geometry, number theory, and mathematical aspects of quantum field and string theory. IBS-CGP is located