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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Interacting Fermi gases in disordered one-dimensional lattices
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Interacting Fermi gases in disordered one-dimensional lattices

机译:在无序一维晶格中相互作用的费米气体

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摘要

Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subject to harmonic trapping exhibit intriguing compound phases in which fluid regions coexist with local Mott-insulator and/or band-insulator regions. Motivated by experiments on cold atoms inside disordered optical lattices, we present a theoretical study of the effects of a random potential on these ground-state phases. Within a density-functional scheme we show that disorder has two main effects: (ⅰ) it destroys the local insulating regions if it is sufficiently strong compared with the on-site atom-atom repulsion, and (ⅱ) it induces an anomaly in the compressibility at low density from quenching of percolation.
机译:加载在一维(1D)晶格中并经受谐波捕获的相互作用的两组分费米气体表现出有趣的复合相,其中流体区域与局部Mott绝缘体和/或带绝缘体区域共存。通过对无序光学晶格内的冷原子进行实验的激励,我们提出了对这些基态相的随机势影响的理论研究。在密度函数方案中,我们表明,无序具有两个主要作用:(ⅰ)如果与现场原子-原子排斥相比足够强,它会破坏局部绝缘区域;(ⅱ)会引起无序现象。渗流淬灭导致低密度时的可压缩性。

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