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Are you excited about pioneering experimental quantum computing? Do you want to be part of a world-class research environment developing the next generation of superconducting quantum processors? We
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your research in the area of Quantum optimisation and Quantum AI in ATM domain at 100%. Quantum computing has emerged as a disruptive approach that exploits principles of quantum mechanics to extend
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thin films. We aim to demonstrate their integration in superconducting qubit readout systems and validate KI‑TWPA technology for scalable quantum computing applications. This position is funded through
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still lacks a precise definition of quantum complexity and providing it is one of the most urgent problems at the cutting-edge of quantum theory and quantum gravity. The position within the ERC
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We work on hybrid quantum systems of atoms, mechanical resonators and photonics for sensing and tests of fundamental physics. If you have a passion for highly collaborative, experimental research
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aims to develop hybrid quantum–classical approaches for modeling multiphase flows governed by complex, nonlinear dynamics across multiple scales. The postdoctoral researcher will investigate how
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We are seeking a postdoc to co-design efficient and realistic simulation algorithms for noisy quantum circuits in superconducting hardware, combining quantum modeling with hardware-aware performance
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international partners and connections to industry. We are now looking for a postdoctoral fellow interested in microwave quantum technology based on hybrid semiconductor-superconductor devices. Subject
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Biochemistry advances multiphase flow and separation science to accelerate industrial innovation and implementation. About the research project The project aims to develop hybrid quantum–classical approaches
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phosphors and heavy-metal-based quantum dots. The selected candidates will investigate the fundamental photophysical properties of these sustainable nanomaterials and explore their integration into light