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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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description: - scientific service in research in the area of quantum optics with ultra-cold atoms - design, setup and operation of lab experiments with Bose-Einstein condensates (BEC) in optical
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(Ariane) core. The role is structured in two research phases, covering lightweight cryptography (ASCON) and Post-Quantum Cryptography (PQC), and will contribute to high-impact scholarly publications and
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, the Fellow will investigate the mathematical aspects of quantum-classical hydrodynamics in both reversible and irreversible regimes, on the other hand, they will perform numerical simulations to study
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device engineering. You will gain experience on high-frequency operation and measurement of superconducting quantum circuits, which forms the basis of the most promising present paradigm for quantum
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, including excitation to Rydberg states. Performing high-precision measurements and data analysis of quantum dynamics in the trapped-ion system. Investigating novel applications of Rydberg-ion-based quantum
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Geospatial Research Institute (FGI), the National Land Survey of Finland (NLS) and GFZ will perform three 3-month campaigns of quantum gravimetry in the geothermal field. In each campaign, the AQG will perform
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. Perform high-throughput computation for accelerating materials discovery and generate datasets for materials informatics. Work with teams to refine the developed methods and workflows. Job Requirements: PhD
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94720, United States of America [map ] Subject Areas: Physics / Quantum Sensing , HEP-Phenomenology (hep-ph) , hep-th , High Energy Physics , High Energy Theory , Particle Physics Appl Deadline: 2025/11