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Symmetry-breaking and symmetry-restoring dynamics of a mixture of Bose-Einstein condensates in a double well

机译:玻色-爱因斯坦凝析油混合物在双井中的对称破坏和对称恢复动力学

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摘要

We study the coherent nonlinear tunneling dynamics of a binary mixture of Bose-Einstein condensates in a double-well potential. We demonstrate the existence of a type of mode associated with the "swapping" of the two species in the two wells of the potential. In contrast to the symmetry-breaking macroscopic quantum self-trapping (MQST) solutions, the swapping modes correspond to the tunneling dynamics that preserves the symmetry of the double-well potential. As a consequence of two distinct types of broken-symmetry MQST phases where the two species localize in different potential wells or coexist in the same well, the corresponding symmetry-restoring swapping modes result in dynamics where the two species either avoid or chase each other. In view of the possibility to control the interaction between the species, the binary mixture offers a very robust system to observe these novel effects as well as the phenomena of Josephson oscillations and an- modes.
机译:我们研究了在双阱势中玻色-爱因斯坦凝聚物的二元混合物的相干非线性隧穿动力学。我们证明了与潜力的两个井中的两个物种的“交换”相关的一种模式的存在。与打破对称性的宏观量子自陷(MQST)解决方案相反,交换模式对应于保留了双阱势能对称性的隧穿动力学。由于两种不同类型的破对称MQST相,其中两种物质分别位于不同的潜在阱中或共存于同一孔中,因此对应的对称恢复交换模式会导致两个物种相互躲避或追逐的动力学。考虑到控制物种之间相互作用的可能性,二元混合物提供了一个非常健壮的系统来观察这些新颖的效应以及约瑟夫森振动和反模现象。

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