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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Bound vortex states and exotic lattices in multicomponent Bose-Einstein condensates: The role of vortex-vortex interaction
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Bound vortex states and exotic lattices in multicomponent Bose-Einstein condensates: The role of vortex-vortex interaction

机译:多组分玻色-爱因斯坦凝聚物中的束缚涡态和奇异晶格:涡旋相互作用的作用

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摘要

We numerically study the vortex-vortex interaction in multicomponent homogeneous Bose-Einstein condensates within the realm of the Gross-Pitaevskii theory. We provide strong evidence that pairwise vortex interaction captures the underlying mechanisms which determine the geometric configuration of the vortices, such as different lattices in many-vortex states, as well as the bound vortex states with two (dimer) or three (trimer) vortices. Specifically, we discuss and apply our theoretical approach to investigate intra- and intercomponent vortex-vortex interactions in two- and threecomponent Bose-Einstein condensates, thereby shedding light on the formation of the exotic vortex configurations. These results correlate with current experimental efforts in multicomponent Bose-Einstein condensates and the understanding of the role of vortex interactions in multiband superconductors.
机译:我们在Gross-Pitaevskii理论范围内,对多组分均质玻色-爱因斯坦凝聚物中的涡旋相互作用进行了数值研究。我们提供有力的证据,表明成对的涡旋相互作用捕获了确定涡旋几何构型的潜在机制,例如多涡旋状态下的不同晶格,以及带有两个(二聚体)或三个(三聚体)涡旋的结合涡旋状态。具体而言,我们讨论并应用了我们的理论方法来研究两组分和三组分Bose-Einstein凝析物中的组分内和组分间涡旋相互作用,从而为异源涡旋构型的形成提供了线索。这些结果与当前在多组分Bose-Einstein缩合物中的实验工作以及涡旋相互作用在多带超导体中的作用的理解有关。

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