个性化文献订阅>期刊> LASER PHYSICS LETTERS
 

Route to turbulence in a trapped Bose-Einstein condensate

  作者 Seman, JA; Henn, EAL; Shiozaki, RF; Roati, G; Poveda-Cuevas, FJ; Magalhaes, KMF; Yukalov, VI; Tsubota, M; Kobayashi, M; Kasamatsu, K; Bagnato, VS  
  选自 期刊  LASER PHYSICS LETTERS;  卷期  2011年8-9;  页码  691-696  
  关联知识点  
 

[摘要]We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fixed frequency of excitation, we have explored how the values of amplitude and time of excitation must be combined in order to produce quantum turbulence in the condensate. Depending on the combination of these parameters different behaviors are observed in the sample. For the lowest values of time and amplitude of excitation, we observe a bending of the main axis of the cloud. Increasing the amplitude of excitation we observe an increasing number of vortices. The vortex state can evolve into the turbulent regime if the parameters of excitation are driven up to a certain set of combinations. If the value of the parameters of these combinations is exceeded, all vorticity disappears and the condensate enters into a different regime which we have identified as the granular phase. Our results are summarized in a diagram of amplitude versus time of excitation in which the different structures can be identified. We also present numerical simulations of the Gross-Pitaevskii equation which support our observations. (C) 2011 by Astro Ltd. Published exclusively by WILEY-VCH Verlag GmbH & Co. KGaA

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内