Search Results - "Wulschner, F."

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  1. 1

    Photon Statistics of Propagating Thermal Microwaves by Goetz, J, Pogorzalek, S, Deppe, F, Fedorov, K G, Eder, P, Fischer, M, Wulschner, F, Xie, E, Marx, A, Gross, R

    Published in Physical review letters (10-03-2017)
    “…In experiments with superconducting quantum circuits, characterizing the photon statistics of propagating microwave fields is a fundamental task. We quantify…”
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  2. 2

    Displacement of Propagating Squeezed Microwave States by Fedorov, Kirill G, Zhong, L, Pogorzalek, S, Eder, P, Fischer, M, Goetz, J, Xie, E, Wulschner, F, Inomata, K, Yamamoto, T, Nakamura, Y, Di Candia, R, Las Heras, U, Sanz, M, Solano, E, Menzel, E P, Deppe, F, Marx, A, Gross, R

    Published in Physical review letters (08-07-2016)
    “…Displacement of propagating quantum states of light is a fundamental operation for quantum communication. It enables fundamental studies on macroscopic quantum…”
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  3. 3
  4. 4

    Tunable and switchable coupling between two superconducting resonators by Baust, A, Hoffmann, E, Haeberlein, M, Schwarz, M J, Eder, P, Goetz, J, Wulschner, F, Xie, F, Zhong, L, Quijandria, F

    “…We realize a device allowing for tunable and switchable coupling between two frequency-degenerate superconducting resonators mediated by an artificial atom…”
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  5. 5

    Photon Statistics of Propagating Thermal Microwaves by Goetz, J, Pogorzalek, S, Deppe, F, Fedorov, K. G, Eder, P, Fischer, M, Wulschner, F, Xie, E, Marx, A, Gross, R

    Published 11-03-2017
    “…Phys. Rev. Lett. 118, 103602 (2017) In experiments with superconducting quantum circuits, characterizing the photon statistics of propagating microwave fields…”
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  6. 6

    Second-order decoherence mechanisms of a transmon qubit probed with thermal microwave states by Goetz, J, Deppe, F, Eder, P, Fischer, M, Müting, M, Martínez, J. P, Pogorzalek, S, Wulschner, F, Xie, E, Fedorov, K. G, Marx, A, Gross, R

    Published 11-04-2017
    “…Quant. Sci. Tech. 2, 025002 (2017) Thermal microwave states are omnipresent noise sources in superconducting quantum circuits covering all relevant frequency…”
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  7. 7

    Displacement of propagating squeezed microwave states by Fedorov, Kirill G, Zhong, L, Pogorzalek, S, Eder, P, Fischer, M, Goetz, J, Xie, E, Wulschner, F, Inomata, K, Yamamoto, T, Nakamura, Y, Di Candia, R, Heras, U. Las, Sanz, M, Solano, E, Menzel, E. P, Deppe, F, Marx, A, Gross, R

    Published 25-01-2016
    “…Phys. Rev. Lett. 117, 020502 (2016) Displacement of propagating quantum states of light is a fundamental operation for quantum communication. It enables…”
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  8. 8

    Tunable coupling of transmission-line microwave resonators mediated by an rf SQUID by Wulschner, F, Goetz, J, Koessel, F. R, Hoffmann, E, Baust, A, Eder, P, Fischer, M, Haeberlein, M, Schwarz, M. J, Pernpeintner, M, Xie, E, Zhong, L, Zollitsch, C. W, Peropadre, B, Ripoll, J. -J. Garcia, Solano, E, Fedorov, K, Menzel, E. P, Deppe, F, Marx, A, Gross, R

    Published 27-08-2015
    “…We realize tunable coupling between two superconducting transmission line resonators. The coupling is mediated by a non-hysteretic rf SQUID acting as a…”
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  9. 9

    Tunable coupling engineering between superconducting resonators: from sidebands to effective gauge fields by Peropadre, B, Zueco, D, Wulschner, F, Deppe, F, Marx, A, Gross, R, García-Ripoll, J. J

    Published 14-07-2012
    “…Phys. Rev. B 87, 134504 (2013) In this work we show that a tunable coupling between microwave resonators can be engineered by means of simple Josephson…”
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  10. 10

    Tunable and Switchable Coupling Between Two Superconducting Resonators by Baust, A, Hoffmann, E, Haeberlein, M, Schwarz, M. J, Eder, P, Menzel, E. P, Fedorov, K, Goetz, J, Wulschner, F, Xie, E, Zhong, L, Quijandria, F, Peropadre, B, Zueco, D, Ripoll, J. -J. Garcia, Solano, E, Deppe, F, Marx, A, Gross, R

    Published 15-01-2015
    “…Phys. Rev. B 91, 014515 (2015) We realize a device allowing for tunable and switchable coupling between two superconducting resonators mediated by an…”
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  11. 11

    Ultrastrong coupling in two-resonator circuit QED by Baust, A, Hoffmann, E, Haeberlein, M, Schwarz, M. J, Eder, P, Goetz, J, Wulschner, F, Xie, E, Zhong, L, Quijandria, F, Zueco, D, Ripoll, J. -J. Garcia, Garcia-Alvarez, L, Romero, G, Solano, E, Fedorov, K. G, Menzel, E. P, Deppe, F, Marx, A, Gross, R

    Published 23-12-2014
    “…Phys. Rev. B 93, 214501 (2016) We report on ultrastrong coupling between a superconducting flux qubit and a resonant mode of a system comprised of two…”
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