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Symmetry-protected topological phases of one-dimensional interacting fermions with spin-charge separation

机译:用旋烧分离的一维相互作用码头的对称保护的拓扑阶段

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摘要

The low energy behavior of a huge variety of one-dimensional interacting spinful fermionic systems exhibits spin-charge separation, described in the continuum limit by two sine-Gordon models decoupled in the charge and spin channels. Interaction is known to induce, besides the gapless Luttinger liquid phase, eight possible gapped phases, among which are the Mott, Haldane, charge-/spin-density, and bond-ordered wave insulators, and the Luther Emery liquid. Here we prove that some of these physically distinct phases have nontrivial topological properties, notably the presence of degenerate protected edge modes with fractionalized charge/spin. Moreover, we show that the eight gapped phases are in one-to-one correspondence with the symmetry-protected topological (SPT) phases classified by group cohomology theory in the presence of particle-hole symmetry P. The latter result is also exploited to characterize SPT phases by measurable nonlocal order parameters which follow the system evolution to the quantum phase transition. The implications on the appearance of exotic orders in the class of microscopic Hubbard Hamiltonians, possibly without P symmetry at higher energies, are discussed.
机译:各种各样的一维相互作用的纺丝铁饼系统的低能量行为表现出旋转电荷分离,在连续的两个正弦的限制中描述了两个正弦戈登模型,在电荷和自旋通道上分离。已知相互作用以诱导八种可能的液相,其中八个可能的覆盖阶段,其中包括薄荷,卤代,充电/旋转密度和粘合有序波绝缘体,以及路易师砂液。在这里,我们证明了这些物理不同的阶段中的一些具有非致命性质,特别是具有成分化充电/旋转的退化保护边缘模式的存在。此外,我们表明,在存在粒子对称性P存在下,八个间隙阶段与由组同学理论分类的对称保护的拓扑(SPT)相一对一的对应关系。后一种结果也被利用来表征通过可测量的非局部订单参数进行SPT相,遵循系统演化到量子相转变。讨论了对微观哈布德汉密尔顿人类类别的异国情调订单的影响,可能没有在更高的能量下在更高的能量下进行对称性。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第24期|245108.1-245108.7|共7页
  • 作者单位

    Institute for condensed matter physics and complex systems DISAT Politecnico di Torino I-10129 Torino Italy;

    Institute for condensed matter physics and complex systems DISAT Politecnico di Torino I-10129 Torino Italy CNR-SPIN Monte S.Angelo - via Cinthia I-80126 Napoli Italy;

    Institute for condensed matter physics and complex systems DISAT Politecnico di Torino I-10129 Torino Italy;

    Institute for condensed matter physics and complex systems DISAT Politecnico di Torino I-10129 Torino Italy;

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