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Literatura académica sobre el tema "Avantage quantique"
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Artículos de revistas sobre el tema "Avantage quantique"
Auffèves, Alexia. "Optimiser la consommation énergétique des calculateurs quantiques : un défi interdisciplinaire". Reflets de la physique, n.º 69 (junio de 2021): 16–20. http://dx.doi.org/10.1051/refdp/202169016.
Texto completoPavel, Ilarion. "Les défis des technologies quantiques". Annales des Mines - Responsabilité et environnement N° 114, n.º 2 (10 de abril de 2024): 81–90. http://dx.doi.org/10.3917/re1.114.0081.
Texto completoTeyssier, Ronan. "The Organizational and Electoral Determinants of the Provincial Funding of Private Education in Canada: A Quantile Regression Analysis". Canadian Journal of Political Science 44, n.º 4 (diciembre de 2011): 829–57. http://dx.doi.org/10.1017/s0008423911000771.
Texto completoRawat, Vijay, Nancy Greer, Erika Langham, Matthew Rockloff y Christine Hanley. "What is the harm? Applying a public health methodology to measure the impact of gambling problems and harm on quality of life." Journal of Gambling Issues, n.º 36 (2 de agosto de 2017). http://dx.doi.org/10.4309/jgi.2017.36.2.
Texto completoBrowne, Matthew, Vijay Rawat, Nancy Greer, Erika Langham, Matthew Rockloff y Christine Hanley. "What is the harm? Applying a public health methodology to measure the impact of gambling problems and harm on quality of life." Journal of Gambling Issues, n.º 36 (2 de agosto de 2017). http://dx.doi.org/10.4309/jgi.v0i36.3978.
Texto completoTesis sobre el tema "Avantage quantique"
Chabaud, Ulysse. "Continuous variable quantum advantages and applications in quantum optics". Electronic Thesis or Diss., Sorbonne université, 2020. http://www.theses.fr/2020SORUS066.
Texto completoQuantum physics has led to a revolution in our conception of the nature of our world and is now bringing about a technological revolution. The use of quantum information promises indeed applications that outperform those of today's so-called classical devices. Continuous variable quantum information theory refers to the study of quantum information encoded in continuous degrees of freedom of quantum systems. This theory extends the mathematical study of quantum information to quantum states in Hilbert spaces of infinite dimension. It offers different perspectives compared to discrete variable quantum information theory and is particularly suitable for the description of quantum states of light. Quantum optics is thus a natural experimental platform for developing quantum applications in continuous variable. This thesis focuses on three main questions: where does a quantum advantage, that is, the ability of quantum machines to outperform classical machines, come from? How to ensure the proper functioning of a quantum machine? What advantages can be gained in practice from the use of quantum information? These three questions are at the heart of the development of future quantum technologies and we provide several answers within the frameworks of continuous variable quantum information and linear quantum optics