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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Stripe formation in fermionic atoms on a two-dimensional optical lattice inside a box trap: Density-matrix renormalization-group studies for the repulsive Hubbard model with open boundary conditions
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Stripe formation in fermionic atoms on a two-dimensional optical lattice inside a box trap: Density-matrix renormalization-group studies for the repulsive Hubbard model with open boundary conditions

机译:在箱子陷阱内的二维光学晶格上的Fermionic原子中的条纹形成:密度 - 矩阵重新定化 - 用于开放边界条件的排斥屋牌模型的研究

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摘要

We suggest that a box shape trap enables one to observe intrinsic properties of the repulsive Hubbard model in a fixed doping in contrast to the conventional harmonic trap bringing about spatial variations of atom density profiles. In order to predict atomic density profile under the box trap, we apply the directly extended density-matrix renormalization-group method to a four-leg repulsive Hubbard model with the open boundary condition. Consequently, we find that stripe formation is universal in a low-hole-doping range and the stripe sensitively changes its structure with variations of U/t and the doping rate. A remarkable change is that a stripe formed by a hole pair turns to one by a bihole pair when entering a limited strong U/t range. Furthermore, a systematic calculation reveals that the Hubbard model shows a change from the stripe to the Friedel like oscillation with increasing the doping rate.
机译:我们建议一个盒形陷阱使一个人能够在固定的掺杂中观察排斥隆巴德模型的内在特性,与传统的谐波陷阱带来原子密度剖面的空间变化。 为了预测盒子陷阱下的原子密度分布,我们将直接扩展的密度 - 矩阵重新定位 - 组方法应用于具有开放边界条件的四腿排斥的喧嚣模型。 因此,我们发现条纹形成是普及的,在低孔掺杂范围内,条纹敏感地改变其结构,其结构与U / T的变化和掺杂率。 在进入有限的强U / T范围内时,由孔对形成的条纹通过BioHole对形成一个条纹。 此外,系统计算揭示了哈伯德模型显示从条纹到弗里莱的变化,如振动相同,随着掺杂速率。

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