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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >A new non-Abelian topological superfluid of cold Fermi gases in anisotropic and spin-dependent optical lattices
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A new non-Abelian topological superfluid of cold Fermi gases in anisotropic and spin-dependent optical lattices

机译:各向异性和自旋相关的光学晶格中冷费米气体的一种新的非阿贝尔拓扑超流体

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摘要

To realize a non-Abelian s-wave topological superfluid of cold Fermi gases, generally a Zeeman energy splitting larger than the superfluid pairing gap is necessary. In this paper, we find that using an anisotropic and spin-dependent optical lattice to trap gases, a new non-Abelian topological superfluid phase appears, in contrast to an isotropic and spin-independent optical lattice. A characteristic of this new non-Abelian topological superfluid is that the Zeeman energy splitting can be smaller than the superfluid pairing gap. By self-consistently solving the gap equation and considering the competition against the normal state and phase separation, this new phase is also stable. We also investigate edge states and the effects of a harmonic trap potential.
机译:为了实现冷费米气体的非阿贝拉s波拓扑超流体,通常需要大于超流体配对间隙的塞曼能量分裂。在本文中,我们发现,与各向异性和自旋无关的光学晶格相反,使用各向异性和自旋相关的光学晶格捕获气体,会出现一种新的非阿贝尔拓扑超流体相。这种新的非阿贝尔拓扑超流体的一个特征是,塞曼能分裂可以小于超流体配对间隙。通过自洽地求解间隙方程并考虑与正常状态和相分离的竞争,该新相也是稳定的。我们还研究了边缘状态和谐波陷阱电位的影响。

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