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Gap solitons in fermion superfluids

机译:费米子超流体中的间隙孤子

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We consider a dynamical model of a superfluid Fermi gas in the Bardeen-Cooper-Schrieffer regime trapped in a periodic optical lattice (OL) potential. The model is based on an equation for complex order parameter φ of the superfluid, which is derived from the relevant energy density and includes a self-repulsive term ~φ~(7/3). By means of the variational approximation (VA) and numerical simulations, we find families of stable one- and two-dimensional (1D and 2D) gap solitons (GSs) in this model. Chiefly, they are compact objects trapped in a single cell of the OL. Families of stable even and odd bound states of these GSs are also found in one dimension. A 3D GS family is constructed too, but solely within the framework of the VA. In the linear limit, the VA predicts an almost exact position of the left edge of the first band-gap in the OL-induced spectrum. The full VA provides an accurate description of families of 1D and 2D fundamental GSs. We also demonstrate that a 1D GS can be safely transported by an OL moving at a moderate velocity.
机译:我们考虑被困在周期性光学晶格(OL)势中的Bardeen-Cooper-Schrieffer体制中的超流体费米气体的动力学模型。该模型基于超流体的复阶参数φ的方程式,该方程是从相关的能量密度得出的,并且包括一个自排斥项〜φ〜(7/3)。通过变分近似(VA)和数值模拟,我们在此模型中找到了稳定的一维和二维(一维和二维)间隙孤子(GSs)族。首先,它们是被困在OL单个单元中的紧凑对象。这些GS的稳定的偶数和奇数束缚态的族也可以在一维中找到。 3D GS系列也已构建,但仅在VA框架内。在线性极限中,VA预测OL诱导谱中第一个带隙的左边缘几乎准确的位置。完整的VA提供了1D和2D基本GS系列的准确描述。我们还证明了1D GS可以通过以中等速度移动的OL安全地运输。

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