Auteurs : ... (Auteur de la conférence)
... (Editeur )
Résumé :
Coherent states have been long known for their applications in quantum optics and atomic physics. In recent years, a number of new applications have emerged in the area of quantum information theory. In this talk I will highlight two such applications. The first is the comparison between classical and quantum strategies to process information. Byproducts of this comparison are benchmarks that can be used to certify quantum advantages in realistic experiments, fundamental relations between quantum copy machines and precision measurements, and theoretical tools for security proofs in quantum cryptography. The second application is the simulation of unitary gates in quantum networks. Here the task is to simulate a given set of unitary gates using gates in another set, a general problem that includes as special cases the simulation of charge conjugate dynamics and the emulation of an unknown unitary gate. The problem turns out to have useful connections with the ultimate precision limits of quantum metrology.
Codes MSC :
81P15
- Quantum measurement theory
81P50
- Quantum state estimation, approximate cloning
81P45
- Quantum information, communication, networks
81P94
- Quantum cryptography
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Informations sur la Rencontre
Nom de la Rencontre : Coherent states and their applications: a contemporary panorama / Etats cohérents et leurs applications : un panorama contemporain Dates : 14/11/2016 - 18/11/2016
Année de la rencontre : 2016
URL de la Rencontre : http://conferences.cirm-math.fr/1461.html
DOI : 10.24350/CIRM.V.19090503
Citer cette vidéo:
(2016). New applications of coherent states in quantum information theory. CIRM. Audiovisual resource. doi:10.24350/CIRM.V.19090503
URI : http://dx.doi.org/10.24350/CIRM.V.19090503
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Bibliographie
- Chiribella, G., & Ebler, D. (2016). Optimal quantum networks and one-shot entropies. New Journal of Physics, 18, 093053 - http://dx.doi.org/10.1088/1367-2630/18/9/093053
- Chiribella, G., & Adesso, G. (2014). Quantum Benchmarks for Pure Single-Mode Gaussian States. Physical Review Letters. 112(1), 010501 - https://doi.org/10.1103/PhysRevLett.112.010501
- Yang, Y., Chiribella, G., & Adesso, G. (2014). Certifying quantumness: Benchmarks for the optimal processing of generalized coherent and squeezed states. Physical Review A, 90(4), 042319 - https://doi.org/10.1103/PhysRevA.90.042319
- Chiribella, G., & Xie, J. (2013). Optimal design and quantum benchmarks for coherent state ampliers. Physical Review Letters, 110(21), 213602 - https://doi.org/10.1103/PhysRevLett.110.213602