Search Results - "Von Cube, C."

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  1. 1

    Phase-sensitive detection of bragg scattering at 1D optical lattices by SLAMA, S, VON CUBE, C, DEH, B, LUDEWIG, A, ZIMMERMANN, C, COURTEILLE, W

    Published in Physical review letters (20-05-2005)
    “…We report on the observation of Bragg scattering at 1D atomic lattices. Cold atoms are confined by optical dipole forces at the antinodes of a standing wave…”
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    Journal Article
  2. 2

    A closer look to the timing of orchidopexy in undescended testes and adherence to the AWMF-guideline by Von Cube, C., Schmidt, A., Krönninger, M., Hrivatakis, G., Astfalk, W., Fuchs, J., Ellerkamp, V.

    Published in Pediatric surgery international (29-02-2024)
    “…Background To lower the risk of testicular malignancies and subfertility, international guidelines recommend orchidopexy for undescended testis (UDT) before…”
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    Journal Article
  3. 3

    Observation of lasing mediated by collective atomic recoil by Kruse, D, von Cube, C, Zimmermann, C, Courteille, Ph W

    Published in Physical review letters (31-10-2003)
    “…We observe the buildup of a frequency-shifted reverse light field in a unidirectionally pumped high-Q optical ring cavity serving as a dipole trap for cold…”
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    Journal Article
  4. 4

    Self-synchronization and dissipation-induced threshold in collective atomic recoil lasing by VON CUBE, C, SLAMA, S, KRUSE, D, ZIMMERMANN, C, COURTEILLE, Ph. W, ROBB, G. R. M, PIOVELLA, N, BONIFACIO, And R

    Published in Physical review letters (20-08-2004)
    “…Networks of globally coupled oscillators exhibit phase transitions from incoherent to coherent states. Atoms interacting with the counterpropagating modes of a…”
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    Journal Article
  5. 5

    Cold atoms in a high- Q ring cavity by Kruse, D., Ruder, M., Benhelm, J., von Cube, C., Zimmermann, C., Courteille, Ph. W., Elsässer, Th, Nagorny, B., Hemmerich, A.

    “…We report the confinement of large clouds of ultracold {sup 85}Rb atoms in a standing-wave dipole trap formed by the two counterpropagating modes of a high-Q…”
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    Journal Article
  6. 6

    Multiple reflections and diffuse scattering in Bragg scattering at optical lattices by Slama, S., von Cube, C., Kohler, M., Zimmermann, C., Courteille, Ph. W.

    “…We study Bragg scattering at one-dimensional atomic lattices. Cold atoms are confined by optical dipole forces at the antinodes of a standing wave generated…”
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    Journal Article
  7. 7

    Dimensional crossover in Bragg scattering from an optical lattice by Slama, S., von Cube, C., Ludewig, A., Kohler, M., Zimmermann, C., Courteille, Ph. W.

    “…We study Bragg scattering at one-dimensional (1D) optical lattices. Cold atoms are confined by the optical dipole force at the antinodes of a standing wave…”
    Get full text
    Journal Article
  8. 8

    Creating and probing long-range order in atomic clouds by von Cube, C., Slama, S., Kohler, M., Zimmermann, C., Courteille, Ph.W.

    Published in Fortschritte der Physik (01-08-2006)
    “…Ultracold atoms interacting with the optical modes of a high‐Q optical ring cavity can synchronize their motion. The collective behavior makes the system…”
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    Journal Article
  9. 9

    Collective atomic recoil lasing by Zimmermann, Claus, Kruse, Dietmar, Cube, Christoph Von, Slama, Sebastian, Deh, Benjamin, Courteille, Philippe

    Published in Journal of modern optics (01-04-2004)
    “…A cloud of ultra-cold atoms is loaded into the attractive potential of a light wave that is generated by two counter-propagating modes of a high-finesse ring…”
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    Journal Article
  10. 10

    Observation of Lasing Mediated by Collective Atomic Recoil by Kruse, D, von Cube, C, Zimmermann, C, Courteille, Ph. W

    Published 07-05-2003
    “…We observe the buildup of a frequency-shifted reverse light field in a unidirectionally pumped high-$Q$ optical ring cavity serving as a dipole trap for cold…”
    Get full text
    Journal Article
  11. 11

    Creating and probing long-range order in atomic clouds by von Cube, C, Slama, S, Kohler, M, Zimmermann, C, Courteille, Ph. W

    Published 29-11-2005
    “…Ultracold atoms interacting with the optical modes of a high-Q optical ring cavity can synchronize their motion. The collective behavior makes the system…”
    Get full text
    Journal Article
  12. 12

    Multiple Reflections and Diffuse Scattering in Bragg Scattering at Optical Lattices by Slama, S, von Cube, C, Kohler, M, Zimmermann, C, Courteille, Ph. W

    Published 29-11-2005
    “…We study Bragg scattering at 1D atomic lattices. Cold atoms are confined by optical dipole forces at the antinodes of a standing wave generated inside a…”
    Get full text
    Journal Article
  13. 13

    Dimensional Crossover in Bragg Scattering from an Optical Lattice by Slama, S, von Cube, C, Ludewig, A, Kohler, M, Zimmermann, C, Courteille, Ph. W

    Published 07-06-2005
    “…We study Bragg scattering at 1D optical lattices. Cold atoms are confined by the optical dipole force at the antinodes of a standing wave generated inside a…”
    Get full text
    Journal Article
  14. 14

    Phase-sensitive detection of Bragg scattering at 1D optical lattices by Slama, S, von Cube, C, Deh, B, Ludewig, A, Zimmermann, C, Courteille, Ph. W

    Published 22-10-2004
    “…We report on the observation of Bragg scattering at 1D atomic lattices. Cold atoms are confined by optical dipole forces at the antinodes of a standing wave…”
    Get full text
    Journal Article
  15. 15

    Selfsynchronization and dissipation-induced threshold in collective atomic recoil lasing by von Cube, C, Slama, S, Kruse, D, Zimmermann, C, Courteille, Ph. W, Robb, G. R. M, Piovella, N, Bonifacio, R

    Published 02-02-2004
    “…Networks of globally coupled oscillators exhibit phase transitions from incoherent to coherent states. Atoms interacting with the counterpropagating modes of a…”
    Get full text
    Journal Article
  16. 16

    Cold atoms in a high-Q ring-cavity by Kruse, D, Ruder, M, Benhelm, J, von Cube, C, Zimmermann, C, Courteille, Ph. W, Elsaesser, Th, Nagorny, B, Hemmerich, A

    Published 12-02-2003
    “…We report the confinement of large clouds of ultra-cold 85-Rb atoms in a standing-wave dipole trap formed by the two counter-propagating modes of a high-Q…”
    Get full text
    Journal Article