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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
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Displaying results 51 to 60 of 1697.
  • Publications
    Diffraction of polar molecules at nanomasks with low charge density
    Simonovic, K., Ferstl, R., Barlow, A., Shayeghi, A., Brand, C., & Arndt, M. (2024). Diffraction of polar molecules at nanomasks with low charge density. Phys. Rev. Research, 6, ARTN 033109. doi:10.1103/PhysRevResearch.6.033109
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    Non-Hermitian dynamics and non-reciprocity of optically coupled nanoparticles
    Manuel Reisenbauer,, Henning Rudolph,, Livia Egyed,, Klaus Hornberger,, Anton V. Zasedatelev,, Murad Abuzarli,, et al. (2024). Non-Hermitian dynamics and non-reciprocity of optically coupled nanoparticles. Nat. Phys., 20, 1629–1635. doi:10.1038/s41567-024-02589-8
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  • Publications
    Heralded High-Dimensional Photon-Photon Quantum Gate
    Zhi-Feng Liu,, Zhi-Cheng Ren,, Pei Wan,, Wen-Zheng Zhu,, Zi-Mo Cheng,, Jing Wang,, et al. (2024). Heralded High-Dimensional Photon-Photon Quantum Gate. arXiv:quant-ph. doi:10.48550/arXiv.2407.16356
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    Experimental aspects of indefinite causal order in quantum mechanics
    Lee A. Rozema,, Teodor Strömberg,, Huan Cao,, Yu Guo,, Bi-Heng Liu,, & Philip Walther,. (2024). Experimental aspects of indefinite causal order in quantum mechanics. Nature Reviews Physics. doi:10.1038/s42254-024-00739-8
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    Purifying Photon Indistinguishability through Quantum Interference
    Faurby, C. F. D., Carosini, L., Cao, H., Sund, P. I., Hansen, L. M., Giorgino, F., et al. (2024). Purifying Photon Indistinguishability through Quantum Interference. Phys. Rev. Lett., 133, ARTN 033604. doi:10.1103/PhysRevLett.133.033604
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    Characterising transformations between quantum objects, 'completeness' of quantum properties, and transformations without a fixed causal order
    Milz, S., & Quintino, M. T. (2024). Characterising transformations between quantum objects, 'completeness' of quantum properties, and transformations without a fixed causal order. Quantum-Austria, 8, ARTN 1415. doi:10.22331/q-2024-07-17-1415
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    Precision is not limited by the second law of thermodynamics
    Florian Meier,, Yuri Minoguchi,, Simon Sundelin,, Tony J. G. Apollaro,, Paul Erker,, Simone Gasparinetti,, & Marcus Huber,. (2024). Precision is not limited by the second law of thermodynamics. arXiv:quant-ph. doi:10.48550/arXiv.2407.07948
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    Photonic Entanglement and Polarization Nonclassicality: Two Manifestations, One Nature
    Laura Ares,, Nidhin Prasannan,, Elizabeth Agudelo,, Alfredo Luis,, Benjamin Brecht,, Christine Silberhorn,, & Jan Sperling,. (2024). Photonic Entanglement and Polarization Nonclassicality: Two Manifestations, One Nature. arXiv:quant-ph. doi:10.48550/arXiv.2407.07477
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    Relational objectivity in presence of finite quantum resources
    Luis C. Barbado,, & Časlav Brukner,. (2024). Relational objectivity in presence of finite quantum resources. arXiv:quant-ph. doi:10.48550/arXiv.2407.04391
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    The sum of entanglement and subsystem coherence is invariant under quantum reference frame transformations
    Carlo Cepollaro,, Ali Akil,, Paweł Cieśliński,, Anne-Catherine de la Hamette,, & Časlav Brukner,. (2024). The sum of entanglement and subsystem coherence is invariant under quantum reference frame transformations. arXiv:quant-ph. doi:10.48550/arXiv.2406.19448
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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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