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quantum probability and statistics, quantum channels, semigroups of completely positive linear maps with their applications in quantum computing and information. This activity will take place in
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to Quantum Computing; • assess the level of awareness of these technologies among Italian companies and trace their adoption paths. Where to apply Website https://aunicalogin.polimi.it/aunicalogin
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sources. The activity will be purely experimental in Prof. Lobino's quantum photonics laboratory. Where to apply Website https://lavoraconnoi.unitn.it/incarichi-di-ricerca/dipartimento-di-ingegneria-i
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Dipartimento di Ingegneria dell'Informazione - Università degli Studi di Padova | Italy | about 2 months ago
and implementation of QKD (Quantum Key Distribution) protocols in both optical fiber and free space. 2) Design and conduct experiments for the practical demonstration of QKD systems, analyzing and
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quantum materials. The instrumentation design activity will be complemented by ARPES, RIXS, and XMCD experiments on quasi-2D materials with special magnetic and electronic properties, such as altermagnetism
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systems, stochastic methods in statistical mechanics, hydrodynamic limits, interacting many-body systems, quantum macroscopic evolution equations, stochastic differential equations, computational methods in
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", https://cordis.europa.eu/project/id/101227522 Quantum clocks promise precision for navigation, communication, and scientific discovery, which is crucial for Europe’s digital sovereignty. Supported by
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, biomedical and quantum devices. To this end, we cover the whole path: from the design of novel materials, displaying unprecedent electronic, optical, and magnetic properties, to their implementation in real
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active galactic nuclei; 5) Bridging Quantum Thermodynamics and Quantum Information Theory: Toward a Unified Framework for Energy and Information Manipulation; 6) Multiomic analysis of neural development
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Dipartimento di Ingegneria dell'Informazione - Università degli Studi di Padova | Italy | about 2 months ago
simulation: Develop and optimize the layouts of photonic integrated circuits (PICs) for quantum communication applications. Simulation tools such as gdsfactory, Matlab, and Python will be used to validate