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准一维偶极玻色-爱因斯坦凝聚体中的量子涨落

Quantum Fluctuations in Quasi-One-Dimensional Dipolar Bose-Einstein Condensates.

作者信息

Edler D, Mishra C, Wächtler F, Nath R, Sinha S, Santos L

机构信息

Institut für Theoretische Physik, Leibniz Universität, 30167 Hannover, Germany.

Indian Institute of Science Education and Research, Pune 411 008, India.

出版信息

Phys Rev Lett. 2017 Aug 4;119(5):050403. doi: 10.1103/PhysRevLett.119.050403. Epub 2017 Aug 2.

Abstract

Recent experiments have revealed that beyond-mean-field corrections are much more relevant in weakly interacting dipolar condensates than in their nondipolar counterparts. We show that in quasi-one-dimensional geometries quantum corrections in dipolar and nondipolar condensates are strikingly different due to the peculiar momentum dependence of the dipolar interactions. The energy correction of the condensate presents not only a modified density dependence, but it may even change from attractive to repulsive at a critical density due to the surprising role played by the transversal directions. The anomalous quantum correction translates into a strongly modified physics for quantum-stabilized droplets and dipolar solitons. Moreover, and for similar reasons, quantum corrections of three-body correlations, and hence of three-body losses, are strongly modified by the dipolar interactions. This intriguing physics can be readily probed in current experiments with magnetic atoms.

摘要

最近的实验表明,与非偶极凝聚体相比,超出平均场修正对于弱相互作用偶极凝聚体更为重要。我们表明,在准一维几何结构中,由于偶极相互作用独特的动量依赖性,偶极和非偶极凝聚体中的量子修正存在显著差异。凝聚体的能量修正不仅呈现出修正后的密度依赖性,而且由于横向方向所起的惊人作用,在临界密度下它甚至可能从吸引变为排斥。这种反常的量子修正转化为量子稳定液滴和偶极孤子的物理性质的强烈改变。此外,出于类似原因,偶极相互作用会强烈改变三体关联的量子修正,进而改变三体损失。这种引人入胜的物理现象可以在当前使用磁性原子的实验中很容易地进行探测。

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