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  • Institute for Quantum Optics and Quantum Information ViennaInstitute for Quantum Optics and Quantum Information Vienna
    Institute for Quantum Optics
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Displaying results 1241 to 1250 of 5446.
  • Publications
    Structure of temporal correlations of a qubit
    Hoffmann, J., Spee, C., Guehne, O., & Budroni, C. (2018). Structure of temporal correlations of a qubit. New Journal Of Physics, 20, ARTN 102001. doi:10.1088/1367-2630/aae87f
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  • Publications
    Observation of roton mode population in a dipolar quantum gas
    L. Chomaz, R. van B. (2018). Observation of roton mode population in a dipolar quantum gas. Nature Phys., 14, 442-446. doi:10.1038/s41567-018-0054-7
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  • Publications
    Entanglement distribution over a 96-km-longsubmarine optical fiber
    Wengerowsky, S., Koduru Joshi, S., Steinlechner, F., Richi, J. R., Dobrovolskiy, S. M., Van der Molen, R., et al. (2019). Entanglement distribution over a 96-km-longsubmarine optical fiber. Pnas, n/a, 201818752. doi:10.1073/pnas.1818752116
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    Experimental realization of wave-packet dynamics in cyclic quantum walks
    Nejadsattari, F., Zhang, Y., Bouchard, F., Larocque, H., Sit, A., Cohen, E., et al. (2019). Experimental realization of wave-packet dynamics in cyclic quantum walks. Optica, 6, 174-180. doi:10.1364/OPTICA.6.000174
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    Memory-efficient tracking of complex temporal and symbolic dynamics with quantum simulators
    Elliott, T. J., Garner, A. J. P., & Gu, M. (2019). Memory-efficient tracking of complex temporal and symbolic dynamics with quantum simulators. New Journal Of Physics, 21, 013021. doi:10.1088/1367-2630/aaf824
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  • Publications
    Exploring the framework of assemblage moment matrices and its applications in device-independent characterizations
    Chen, S. -L., Budroni, C., Liang, Y. -C., & Chen, Y. -N. (2018). Exploring the framework of assemblage moment matrices and its applications in device-independent characterizations. Physical Review A, 98, 042127. doi:10.1103/PhysRevA.98.042127
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    Heralded generation of maximal entanglement in any dimension via incoherent coupling to thermal baths
    Bohr Brask, J., Brunner, N., Huber, M., Haack, G., & Tavakoli, A. (2018). Heralded generation of maximal entanglement in any dimension via incoherent coupling to thermal baths. Quantum, 2, 73. doi:10.22331/q-2018-06-13-73
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  • Publications
    Coherent Channeling of Atomic deBroglie Waves
    Keller, C., Bernet, S., Schmiedmayer, J., & Zeilinger, A. (1998). Coherent Channeling of Atomic deBroglie Waves. Technical Digest, Equec'98, -, -. Retrieved from https://www.oeaw.ac.at/fileadmin/Institute/IQOQI-Vienna/PDF/publications-zeilinger/1998_EQEC_Coherent_Channeling_of_Atomic_deBroglie_Waves.pdf
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  • Publications
    Correlating Thermal Machines and the Second Law in the Nanoscale
    Müller, M. P. (2018). Correlating Thermal Machines and the Second Law in the Nanoscale. Physical Review X, 8, 041051. doi:10.1103/PhysRevX.8.041051
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  • Publications
    An entanglement-based wavelength-multiplexed quantum communication network
    Wengerowsky, S., Joshi, S. K., Steinlechner, F., Huebel, H., & Ursin, R. (2018). An entanglement-based wavelength-multiplexed quantum communication network. Nature, 564, 225. doi:10.1038/s41586-018-0766-y
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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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