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Effects of disorder on atomic density waves and spin-singlet dimers in one-dimensional optical lattices

机译:无序对一维光学晶格中原子密度波和自旋单二聚体的影响

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摘要

Using the Bethe-ansatz density-functional theory, we study a one-dimensional Hubbard model of confined attractively interacting fermions in the presence of a uniformly distributed disorder. The strongly correlated Luther-Emery nature of the attractive one-dimensional Hubbard model is fully taken into account as the reference system in the density-functional theory. The effects of the disorder are investigated on the atomic density waves in the weak-to-intermediate attractive interaction and on the spin-singlet dimers of doubly occupied sites in the strongly attractive regime. It is found that atomic density waves are sensitive to the disorder and the spin-singlet dimers of doubly occupied sites are quite unstable against the disorder. We also show that a very weak disorder could smear the singularities in the stiffness, thus, suppresses the spin-singlet pairs.
机译:使用Bethe-ansatz密度泛函理论,我们研究了在均匀分布的无序情况下受限吸引相互作用的费米子的一维Hubbard模型。有吸引力的一维Hubbard模型的强相关的Luther-Emery性质被完全考虑为密度泛函理论的参考系统。研究了无序效应对弱至中间吸引力相互作用中的原子密度波以及强吸引力体系中双重占据位点的自旋单二聚体的影响。发现原子密度波对这种疾病很敏感,而双重占据位点的自旋单二聚体对这种疾病非常不稳定。我们还表明,非常弱的无序可能会抹去刚度中的奇异点,从而抑制自旋-单重对。

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