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  • Institute for Quantum Optics and Quantum Information ViennaInstitute for Quantum Optics and Quantum Information Vienna
    Institute for Quantum Optics
    and Quantum Information
    Vienna
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Displaying results 161 to 170 of 1697.
  • Publications
    Relativistic locality can imply subsystem locality
    Di Biagio, A., Howl, R., Brukner, Č., Rovelli, C., & Christodoulou, M. (2023). Relativistic locality can imply subsystem locality. arXiv:quant-ph. doi:10.48550/arXiv.2305.05645
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  • Publications
    Dissipative phase transitions in optomechanical systems
    Fatemeh Bibak,, Uroš Delić,, Markus Aspelmeyer,, & Borivoje Dakić,. (2023). Dissipative phase transitions in optomechanical systems. Phys. Rev. A, 107, 053505. doi:10.1103/PhysRevA.107.053505
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    Simultaneous transmission of hyper-entanglement in three degrees of freedom through a multicore fiber
    Achatz, L., Bulla, L., Ecker, S., Ortega, E. A., Bartokos, M., Alvarado-Zacarias, J. C., et al. (2023). Simultaneous transmission of hyper-entanglement in three degrees of freedom through a multicore fiber. Npj Quantum Information, 9, ARTN 45. doi:10.1038/s41534-023-00700-0
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    Native qudit entanglement in a trapped ion quantum processor
    Hrmo, P., Wilhelm, B., Gerster, L., van Mourik, M. W., Huber, M., Blatt, R., et al. (2023). Native qudit entanglement in a trapped ion quantum processor. Nature Communications, 14, 2242. doi:10.1038/s41467-023-37375-2
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    Entanglement of particles versus entanglement of fields: Independent quantum resources
    Sperling, J., & Agudelo, E. (2023). Entanglement of particles versus entanglement of fields: Independent quantum resources. Phys Rev A, 107, ARTN 042420. doi:10.1103/PhysRevA.107.042420
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  • Publications
    Leggett-Garg macrorealism and temporal correlations
    Vitagliano, G., & Budroni, C. (2023). Leggett-Garg macrorealism and temporal correlations. Phys Rev A, 107, ARTN 040101. doi:10.1103/PhysRevA.107.040101
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    Device-independent and semi-device-independent entanglement certification in broadcast Bell scenarios
    Boghiu, E. -C., Hirsch, F., Lin, P. -S., Quintino, M. T., & Bowles, J. (2023). Device-independent and semi-device-independent entanglement certification in broadcast Bell scenarios. Scipost Physics Core, 6, 28. doi:10.21468/SciPostPhysCore.6.2.028
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    Certification of non-classicality in all links of a photonic star network without assuming quantum mechanics
    Wang, N. -N., Pozas-Kerstjens, A., Zhang, C., Liu, B. -H., Huang, Y. -F., Li, C. -F., et al. (2023). Certification of non-classicality in all links of a photonic star network without assuming quantum mechanics. Nature Communications, 14, ARTN 2153. doi:10.1038/s41467-023-37842-w
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  • Publications
    Coherent activation of a steerability-breaking channel
    Ku, H. -Y., Lee, K. -Y., Lai, P. -R., Lin, J. -D., & Chen, Y. -N. (2023). Coherent activation of a steerability-breaking channel. Phys Rev A, 107, ARTN 042415. doi:10.1103/PhysRevA.107.042415
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  • Publications
    Nonlocal Temporal Interferometry for Highly Resilient Free-Space Quantum Communication
    Lukas Bulla,, Matej Pivoluska,, Kristian Hjorth,, Oskar Kohout,, Jan Lang,, Sebastian Ecker,, et al. (2023). Nonlocal Temporal Interferometry for Highly Resilient Free-Space Quantum Communication. Phys. Rev. X, 13. doi:10.1103/PhysRevX.13.021001
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Contact

Institute for Quantum Optics and
Quantum Information - Vienna
of the Austrian Academy of Sciences

Boltzmanngasse 3
1090 Vienna, Austria

Phone +43 1 51581-9500
iqoqi-vienna(at)oeaw.ac.at

IQOQI Vienna

We pursue the vision of quantum information science and the wide range of new possibilities it would open up for quantum technologies.

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