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光学晶格中的重入 BCS-BEC 交叉和超流-绝缘相变。

Reentrant BCS-BEC crossover and a superfluid-insulator transition in optical lattices.

机构信息

Department of Physics, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

Phys Rev Lett. 2012 Dec 14;109(24):245302. doi: 10.1103/PhysRevLett.109.245302. Epub 2012 Dec 12.

Abstract

We study the thermodynamics of a two-species Feshbach-resonant atomic Fermi gas in a periodic potential, focusing in a deep optical potential where a tight binding model is applicable. We show that for a more than half-filled band the gas exhibits a reentrant crossover with decreased detuning (increased attractive interaction), from a paired BCS superfluid to a Bose-Einstein condensate (BEC) of molecules of holes, back to the BCS superfluid, and finally to a conventional BEC of diatomic molecules. This behavior is associated with the nonmonotonic dependence of the chemical potential on detuning and the concomitant Cooper-pair or molecular size, larger in the BCS and smaller in the BEC regimes. For a single filled band we find a quantum phase transition from a band insulator to a BCS-BEC superfluid, and map out the corresponding phase diagram.

摘要

我们研究了在周期性势中双原子费希巴赫共振原子费米气体的热力学,重点研究了紧密束缚模型适用的深光学势。我们表明,对于半满能带以上的情况,随着失谐(吸引力相互作用增加)的减小,气体表现出再入交叉,从配对的 BCS 超流到空穴的玻色-爱因斯坦凝聚(BEC),再回到 BCS 超流,最后到双原子分子的常规 BEC。这种行为与化学势对失谐的非单调依赖性以及伴随的库珀对或分子大小有关,在 BCS 区较大,在 BEC 区较小。对于单个满带,我们发现从带绝缘到 BCS-BEC 超流的量子相变,并绘制出相应的相图。

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