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Commensurate-incommensurate transition in two-coupled chains of nearly half-filled electrons

机译:几乎充满一半电子的两耦合链中的相称过渡

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摘要

We investigate the physical properties of two coupled chains of electrons, with a nearly half-filled band, as a function of the interchain hopping t_⊥ and the doping. We show that upon doping, the system undergoes a metal-insulator transition well described by a commensurate-incommensurate transition. By using bosonization and renormalization we determine the full phase diagram of the system, and the physical quantities such as the charge gap. In the commensurate phase two different regions, for which the interchain hopping is relevant and irrelevant exist, leading to a confinement-deconfinement crossover in this phase. A minimum of the charge gap is observed for values of t_⊥ close to this crossover. At large t_⊥ the region of the commensurate phase is enhanced, compared to a single chain. At the metal-insulator transition the Luttinger parameter takes the universal value K_ρ~* = 1, in agreement with previous results on special limits of this model.
机译:我们研究了具有近半填充带的两个电子耦合链的物理性质,它是链间跳跃t_⊥和掺杂的函数。我们表明,掺杂后,该系统经历了金属绝缘体转变,很好地描述了相应的不匹配转变。通过使用玻化和重新归一化,我们可以确定系统的完整相位图以及诸如电荷隙之类的物理量。在相称的阶段,存在两个不同的区域,链间跳变是相关的和不相关的,从而导致该阶段的限制-解除限制交叉。对于接近此分频点的t_⊥值,观察到最小的电荷隙。与单链相比,在较大的时间内,相称区域增大。在金属-绝缘体过渡处,Luttinger参数取通用值K_ρ〜* = 1,与该模型特殊限制下的先前结果一致。

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