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Localisation of weakly interacting bosons in two dimensions: disorder vs lattice geometry effects

机译:弱相互作用的玻色子在二维中的局域性:无序与晶格几何效应

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摘要

We investigate the effects of disorder and lattice geometry against localisation phenomena in a weakly interacting ultracold bosonic gas confined in a 2D optical lattice. The behaviour of the quantum fluid is studied at the mean-field level performing computational experiments, as a function of disorder strength for lattices of sizes similar to current experiments. Quantification of localisation, away from the Bose glass phase, was obtained directly from the stationary density profiles through a robust statistical analysis of the condensate component, as a function of the disorder amplitude. Our results show a smooth transition, or crossover, to localisation induced by disorder in square and triangular lattices. In contrast, associated to its larger tunneling amplitude, honeycomb lattices show absence of localisation for the same range of disorder strengths and same lattice amplitude, while also exhibiting partial localisation for large disorder amplitudes. We also conclude that the coordination number z have a partial influence on how fast this smooth transition occurs as the system size increases. Signatures of disorder are also found in the ground state energy spectrum, where a continuous distribution emerges instead of a distribution of sharp peaks proper to the system in the absence of disorder.
机译:我们调查局限在二维光学晶格中的弱相互作用的超冷硼气体中的局部现象对无序和晶格几何形状的影响。在执行计算实验的平均场水平上研究量子流体的行为,该函数是与类似于当前实验的尺寸的晶格的无序强度的函数。通过对凝结水成分进行稳健的统计分析(作为无序振幅的函数),可以直接从固定密度分布图中获得远离玻色玻璃相的定位定量。我们的结果表明,由正方形和三角形晶格中的无序现象引起的平滑过渡或交叉过渡到了局部化。相反,与其较大的隧穿振幅相关,蜂窝状晶格在相同的无序强度范围和相同的晶格振幅下显示出缺乏局部性,而对于较大的无序幅值也显示出局部局部性。我们还得出结论,随着系统规模的增大,协调数z对这种平稳过渡的发生速度有部分影响。在基态能谱中也发现了无序的特征,在这种状态下出现了连续的分布,而不是在没有无序情况下适合于系统的尖峰的分布。

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