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首页> 外文期刊>Physica, D. Nonlinear phenomena >Gap solitons in a model of a superfluid fermion gas in optical lattices
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Gap solitons in a model of a superfluid fermion gas in optical lattices

机译:光学晶格中超流体费米子气体模型中的间隙孤子

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We consider a dynamical model for a Fermi gas in the Bardeen-Cooper-Schrieffer (BCS) superfluid state, trapped in a combination of a ID or 2D optical lattice (OL) and a tight parabolic potential, acting in the transverse direction(s). The model is based oil an equation for the order parameter (wave function), which is derived from the energy density for the weakly coupled BCS superfluid. The equation includes a nonlinear self-repulsive term of power 7/3, which accounts for the Fermi pressure. Reducing the equation to the I D or 2D form, we construct families of stable I D and 2D gap solitons (GSs) by means of numerical simulations, which are guided by the variational approximation (VA). The GSs are, chiefly. compact objects trapped in a single cell of the OL potential. In the linear limit, the VA predicts almost exact positions of narrow Bloch bands that separate the semi-infinite and first finite gaps, as well as the first and second finite ones. Families of stable even and odd bound states of I D GSs are constructed, too. We also demonstrate that the GS can be dragged without much distortion by an OL moving at a moderate velocity (similar to 1 mm/s, in physical units). The predicted GSs contain similar to 10(3)-10(4) and similar to 10(3) atoms per 1D and 2D settings, respectively.
机译:我们考虑Bardeen-Cooper-Schrieffer(BCS)超流体状态下费米气体的动力学模型,该模型被困在ID或2D光学晶格(OL)和紧密抛物线势的组合中,并在横向方向上起作用。该模型基于油阶参数(波动函数)的方程式,该方程式是从弱耦合BCS超流体的能量密度得出的。该方程式包括一个功率为7/3的非线性自排斥项,它反映了费米压力。将方程简化为I D或2D形式,我们通过数值模拟构造了稳定的I D和2D间隙孤子(GSs)族,并以变分近似(VA)为指导。 GS主要是。被困在OL电位的单个单元中的紧凑物体。在线性极限中,VA可以预测分隔半无限间隙和第一有限间隙以及第一有限间隙和第二有限间隙的窄Bloch带的几乎准确位置。还构造了I GS的稳定的偶数和奇数界态的族。我们还证明,通过以中等速度(类似于物理单位为1 mm / s)移动的OL,可以拖动GS而不会产生太大的变形。预测的GS每1D和2D设置分别包含与10(3)-10(4)和10(3)个原子相似的原子。

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