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Metastable state and macroscopic quantum tunneling of binarymixtures
Authors:C. F. Liu and Y. Tang
Affiliation:(1) Department of Physics, Xiangtan University, Xiangtan, 411105, Hunan, P.R. China;(2) Institute of Modern Physics, Xiangtan University, Xiangtan, 411105, Hunan, P.R. China
Abstract:We provide a mixing model to explore the metastable state and the macroscopic quantum tunneling (MQT) of binary mixtures. For $g_{12} >sqrt {g_1 g_2}$, we first observe the two condensates form the symmetry-breaking state (SBS) and then suddenly transfer to the symmetry-preserving state (SPS) through the MQT. The SBS is shown to be the metastable state in our system. We find the MQT does not spontaneously arise. The inducement mechanism is the damping but not the excitations. The damping mechanism can also control the lifetime and the tunneling decay rate of the SBS. Finally, we further present the origin of these phenomena by examining the energy of the system.
Keywords:  KeywordHeading"  >PACS 03.75.Mn Multicomponent condensates   spinor condensates  03.75.Lm  Tunneling  Josephson effect  Bose-Einstein condensates in periodic potentials  solitons  vortices  topological excitations  05.30.Jp Boson systems  67.85.De Dynamic properties of condensates   excitations, and superfluid flow
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