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Competition between local potentials and attractive particle-particle interactions in superlattices

机译:超晶格中局部势与吸引粒子间相互作用的竞争

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Naturally occuring or man-made systems displaying periodic spatial modulations of their properties on a nanoscale constitute superlattices. Such modulated structures are important both as prototypes of simple nanotechnological devices and as particular examples of emerging spatial inhomogeneity in interacting many-electron systems. Here we investigate the effect different types of modulation of the system parameters have on the ground-state energy and the charge-density distribution of the system. The superlattices are described by the inhomogeneous attractive Hubbard model, and the calculations are performed by density-functional and density-matrix renormalization group techniques. We find that modulations in local electric potentials are much more effective in shaping the system's properties than modulations in the attractive on-site interaction. This is the same conclusion we previously [M.F. Silva, N.A. Lima, A.L. Malvezzi, K. Capelle, Phys. Rev. B 71 (2005) 125130.] obtained for repulsive interactions, suggesting that it is not an artifact of a specific state, but a general property of modulated structures.
机译:在纳米尺度上显示其特性的周期性空间调制的天然存在或人造系统构成超晶格。这样的调制结构作为简单的纳米技术装置的原型,以及作为相互作用的多电子系统中出现的空间不均匀性的特定示例,都是重要的。在这里,我们研究了不同类型的系统参数调制对基态能量和系统电荷密度分布的影响。超晶格由不均匀的有吸引力的哈伯德模型描述,计算由密度函数和密度矩阵重归一化组技术完成。我们发现,局部电势的调制比吸引人的现场交互对调制系统的性能更有效。这与我们之前[M.F. Silva,N.A.利马,A.L. Malvezzi,K.Capelle,物理学。 Rev. B 71(2005)125130.]获得的排斥相互作用,表明它不是特定状态的人工产物,而是调制结构的一般属性。

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