Search Results - "Sayrin, Clément"

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  1. 1

    Nanophotonic Optical Isolator Controlled by the Internal State of Cold Atoms by Sayrin, Clément, Junge, Christian, Mitsch, Rudolf, Albrecht, Bernhard, O’Shea, Danny, Schneeweiss, Philipp, Volz, Jürgen, Rauschenbeutel, Arno

    Published in Physical review. X (01-12-2015)
    “…The realization of nanophotonic optical isolators with high optical isolation even at ultralow light levels and low optical losses is an open problem. Here, we…”
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    Journal Article
  2. 2

    Reconstruction of non-classical cavity field states with snapshots of their decoherence by Bernu, Julien, Dotsenko, Igor, Brune, Michel, Haroche, Serge, Sayrin, Clément, Deléglise, Samuel, Raimond, Jean-Michel

    Published in Nature (London) (25-09-2008)
    “…The state of a microscopic system encodes its complete quantum description, from which the probabilities of all measurement outcomes are inferred. Being a…”
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    Journal Article
  3. 3

    Progressive field-state collapse and quantum non-demolition photon counting by Bernu, Julien, Kuhr, Stefan, Brune, Michel, Haroche, Serge, Sayrin, Clément, Deléglise, Samuel, Guerlin, Christine, Gleyzes, Sébastien, Raimond, Jean-Michel

    Published in Nature (London) (23-08-2007)
    “…The irreversible evolution of a microscopic system under measurement is a central feature of quantum theory. From an initial state generally exhibiting quantum…”
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    Journal Article
  4. 4

    Feedback stabilization of discrete-time quantum systems subject to non-demolition measurements with imperfections and delays by Amini, Hadis, Somaraju, Ram A., Dotsenko, Igor, Sayrin, Clément, Mirrahimi, Mazyar, Rouchon, Pierre

    Published in Automatica (Oxford) (01-09-2013)
    “…We consider a controlled quantum system whose finite dimensional state is governed by a discrete-time nonlinear Markov process. In open-loop, the measurements…”
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  5. 5

    Real-time quantum feedback prepares and stabilizes photon number states by Sayrin, Clément, Dotsenko, Igor, Zhou, Xingxing, Peaudecerf, Bruno, Rybarczyk, Théo, Gleyzes, Sébastien, Rouchon, Pierre, Mirrahimi, Mazyar, Amini, Hadis, Brune, Michel, Raimond, Jean-Michel, Haroche, Serge

    Published in Nature (London) (01-09-2011)
    “…Quantum feedback Feedback loops are central to most classical control procedures. Generalizing this approach to quantum states is complicated by the fact that…”
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  6. 6

    Towards Quantum Simulation with Circular Rydberg Atoms by Nguyen, T. L., Raimond, J. M., Sayrin, C., Cortiñas, R., Cantat-Moltrecht, T., Assemat, F., Dotsenko, I., Gleyzes, S., Haroche, S., Roux, G., Jolicoeur, Th, Brune, M.

    Published in Physical review. X (01-02-2018)
    “…The main objective of quantum simulation is an in-depth understanding of many-body physics, which is important for fundamental issues (quantum phase…”
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    Journal Article
  7. 7

    Array of Individual Circular Rydberg Atoms Trapped in Optical Tweezers by Ravon, B., Méhaignerie, P., Machu, Y., Hernández, A. Durán, Favier, M., Raimond, J. M., Brune, M., Sayrin, C.

    Published in Physical review letters (01-09-2023)
    “…Circular Rydberg atoms (CRAs), i.e., Rydberg atoms with maximal orbital momentum, are highly promising for quantum computation, simulation and sensing. They…”
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    Journal Article
  8. 8

    Freezing coherent field growth in a cavity by the quantum zeno effect by Bernu, J, Deléglise, S, Sayrin, C, Kuhr, S, Dotsenko, I, Brune, M, Raimond, J M, Haroche, S

    Published in Physical review letters (31-10-2008)
    “…We have frozen the coherent evolution of a field in a cavity by repeated measurements of its photon number. We use circular Rydberg atoms dispersively coupled…”
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  9. 9

    Quantum feedback for preparation and protection of quantum states of light by Sayrin, C., Dotsenko, I., Gleyzes, S., Brune, M., Raimond, J.-M, Haroche, S.

    “…Aiming on the preparation of a given physical system in a particular quantum state, we can follow one of several standard approaches. The most straightforward…”
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    Conference Proceeding
  10. 10

    Interacting Circular Rydberg Atoms Trapped in Optical Tweezers by Méhaignerie, Paul, Machu, Yohann, Hernández, Andrés Durán, Creutzer, Gautier, Papoular, David J, Raimond, Jean-Michel, Sayrin, Clément, Brune, Michel

    Published 04-07-2024
    “…Circular Rydberg atoms (CRAs), i.e., Rydberg atoms with maximal orbital momentum, ideally combine long coherence times and strong interactions, a key property…”
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    Journal Article
  11. 11

    Process tomography of field damping and measurement of Fock state lifetimes by quantum non-demolition photon counting in a cavity by Brune, Michel, Bernu, Julien, Guerlin, Christine, Deléglise, Samuel, Sayrin, Clément, Gleyzes, Sébastien, Kuhr, Stefan, Dotsenko, Igor, Raimond, Jean-Michel, Haroche, Serge

    Published in Physical review letters (08-12-2008)
    “…The relaxation of a quantum field stored in a high-$Q$ superconducting cavity is monitored by non-resonant Rydberg atoms. The field, subjected to repetitive…”
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  12. 12

    Spin-motion coupling in a circular Rydberg state quantum simulator: case of two atoms by Méhaignerie, Paul, Sayrin, Clément, Raimond, Jean-Michel, Brune, Michel, Roux, Guillaume

    Published 27-03-2023
    “…Phys. Rev. A 107, 063106 (2023) Rydberg atoms are remarkable tools for the quantum simulation of spin arrays. Circular Rydberg atoms open the way to…”
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    Journal Article
  13. 13

    Array of Individual Circular Rydberg Atoms Trapped in Optical Tweezers by Ravon, Brice, Méhaignerie, Paul, Machu, Yohann, Hernández, Andrés Durán, Favier, Maxime, Raimond, Jean-Michel, Brune, Michel, Sayrin, Clément

    Published 10-04-2023
    “…Phys. Rev. Lett. 131, 093401 (2023) Circular Rydberg atoms (CRAs), i.e., Rydberg atoms with maximal orbital momentum, are highly promising for quantum…”
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    Journal Article
  14. 14

    Towards quantum simulations with circular Rydberg atoms by Thanh Long Nguyen, Cantat-Moltrecht, Tigrane, Cortinas, Rodrigo, Sayrin, Clement, Haroche, Serge, Brune, Michel, Raimond, Jean-Michel

    “…Summary form only given. Quantum simulation offers a highly promising way to understand large correlated quantum systems, and many experimental platforms are…”
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    Conference Proceeding
  15. 15

    Trapped circular Rydberg atoms for quantum simulation by Cortiñas, Rodrigo, Thanh Long Nguyen, Cantat-Moltrecht, Tigrane, Sayrin, Clement, Haroche, Serge, Raimond, Jean-Michel, Brune, Michel

    “…Summary form only given. Condensed-matter systems are interesting and important to understand, for fundamental science as well as towards more applied…”
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    Conference Proceeding
  16. 16

    The quantum Zeno effect and quantum feedback in cavity QED by Dotsenko, I, Bernu, J, Deléglise, S, Sayrin, C, Brune, M, Raimond, J-M, Haroche, S, Mirrahimi, M, Rouchon, P

    Published in Physica scripta (01-09-2010)
    “…We explore experimentally the fundamental projective properties of a quantum measurement and their application in the control of a system's evolution. We…”
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    Journal Article
  17. 17

    Long-lived circular Rydberg states of laser-cooled Rubidium atoms in a cryostat by Cantat-Moltrecht, Tigrane, Cortiñas, Rodrigo, Ravon, Brice, Méhaignerie, Paul, Haroche, Serge, Raimond, Jean-Michel, Favier, Maxime, Brune, Michel, Sayrin, Clément

    Published 12-03-2020
    “…Phys. Rev. Research 2, 022032 (2020) The exquisite properties of Rydberg levels make them particularly appealing for emerging quantum technologies. The…”
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  18. 18

    Towards quantum simulation with circular Rydberg atoms by Nguyen, Thanh Long, Raimond, Jean-Michel, Sayrin, Clément, Cortinas, Rodrigo, Cantat-Moltrecht, Tigrane, Assemat, Fédéric, Dotsenko, Igor, Gleyzes, Sébastien, Haroche, Serge, Roux, Guillaume, Jolicoeur, Thierry, Brune, Michel

    Published 14-03-2018
    “…Phys. Rev. X 8, 011032 (2018) The main objective of quantum simulation is an in-depth understanding of many-body physics. It is important for fundamental…”
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    Journal Article
  19. 19

    Reconstruction of non-classical cavity field states with snapshots of their decoherence by Deleglise, Samuel, Dotsenko, Igor, Sayrin, Clement, Bernu, Julien, Brune, Michel, Raimond, Jean-Michel, Haroche, Serge

    Published 05-09-2008
    “…Nature 455, pp. 510-514 (25 September 2008) The state of a microscopic system encodes its complete quantum description, from which the probabilities of all…”
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    Journal Article
  20. 20

    Quantum Zeno dynamics of a field in a cavity by Raimond, Jean-Michel, Facchi, Paolo, Peaudecerf, Bruno, Pascazio, Saverio, Sayrin, Clément, Dotsenko, Igor, Gleyzes, Sébastien, Brune, Michel, Haroche, Serge

    Published 27-07-2012
    “…Phys. Rev. A 86 (2012) 032120 We analyze the quantum Zeno dynamics that takes place when a field stored in a cavity undergoes frequent interactions with atoms…”
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