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Article
Observation of a Red-Blue Detuning Asymmetry in Matter-Wave Superradiance
Physical Review Letters (2010)
  • L. Deng
  • E. W. Hagley
  • Qiang Cao, Chinese Academy of Sciences
  • Xiaorui Wang, Chinese Academy of Sciences
  • Xinyu Luo, Chinese Academy of Sciences
  • Ruquan Wang, Chinese Academy of Sciences
  • Marvin G. Payne, Georgia Southern University
  • Fan Yang, Chinese Academy of Sciences
  • Xiaoji Chen, Peking University
  • Mingsheng Zhan, Chinese Academy of Sciences
Abstract
We report the first experimental observation of strong suppression of matter-wave superradiance using blue-detuned pump light and demonstrate a pump-laser detuning asymmetry in the collective atomic recoil motion. In contrast to all previous theoretical frameworks, which predict that the process should be symmetric with respect to the sign of the detuning of the pump laser from the one-photon resonance, we find that for condensates the symmetry is broken. With high condensate densities and red-detuned pump light the distinctive multiorder, matter-wave scattering pattern is clearly visible, whereas with blue-detuned pump light superradiance is strongly suppressed. However, in the limit of a dilute atomic gas symmetry is restored.
Keywords
  • Matter-wave superradiance,
  • Pump-laser detuning,
  • Collective atomic recoil
Disciplines
Publication Date
November 23, 2010
Publisher Statement
Authors have the right to use all or part of the Article, including the APS-prepared version without revision or modification, on the author(s)’ web home page or employer’s website. Article obtained from Physical Review Letters.
Citation Information
L. Deng, E. W. Hagley, Qiang Cao, Xiaorui Wang, Xinyu Luo, Ruquan Wang, Marvin G. Payne, Fan Yang, Xiaoji Chen, and Mingsheng Zhan. "Observation of a Red-Blue Detuning Asymmetry in Matter-Wave Superradiance" Physical Review Letters 105.220404 (2010).
doi:10.1103/PhysRevLett.105.220404