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Heart of Entanglement: Chiral, Nematic, and Incommensurate Phases in the Kitaev-Gamma Ladder in a Field

机译:纠缠的心脏:在田地中的Kitaev-Gamma梯子中的手性,向甲型和不计阶段

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The bond-dependent Kitaev model on the honeycomb lattice with anyonic excitations has recently attracted considerable attention. However, in solid-state materials other spin interactions are present, and among such additional interactions, the off-diagonal symmetric Gamma interaction, another type of bond-dependent term, has been particularly challenging to fully understand. A minimal Kitaev-Gamma model has been investigated by various numerical techniques under a magnetic field, but definite conclusions about field-induced spin liquids remain elusive. One reason for this may lie in the limited sizes of the two-dimensional geometry it is possible to access numerically, and missed incommensurately ordered states may be interpreted as a spin liquid. Here we focus on the Kitaev-Gamma ladder model as a guide to the phase space of disordered states which could potentially become a spin liquid in the two-dimensional limit. We determine the entire phase diagram in the presence of a magnetic field along the [111] direction. Because of the competition between the interactions and the field, an extremely rich phase diagram emerges with 15 distinct phases. Focusing near the antiferromagnetic Kitaev region, we identify nine different phases solely within this region: several incommensurate magnetically ordered phases, spin-nematic, and two chiral phases with enhanced entanglement. Of particular interest is a highly entangled phase with staggered chirality with zero-net flux occurring at intermediate field, which along with its companion phases outlines a heart-shaped region of high entanglement, the heart of entanglement. We compare our results for the ladder with a C 3 symmetric cluster of the two-dimensional honeycomb lattice, and offer insight into possible spin liquids in the two-dimensional limit.
机译:蜂窝依赖的Kitaev模型在蜂窝格子上,最近引起了相当大的关注。然而,在固态材料中,存在其他自旋相互作用,并且在这种额外的相互作用中,偏离对称对称伽马相互作用,另一种类型的粘合术语术语特别具有挑战性。通过磁场下的各种数值技术研究了最小的Kitaev-Gamma模型,但是关于现场诱导的旋转液体的确定结论仍然难以捉摸。这可能位于二维几何形状的有限尺寸中,可以数控进入,并且错过的不放心的排序状态可以被解释为旋转液体。在这里,我们将关注Kitaev-Gamma梯形图模型作为无序状态的相位空间的指南,这可能在二维极限中成为旋转液体。我们在沿[111]方向的磁场存在下确定整个相图。由于相互作用与领域之间的竞争,因此具有15个不同阶段的极其丰富的相图。专注于反铁磁性Kitaev地区,我们仅在该地区内识别九个不同阶段:几种不加入的磁性有序相,旋转 - 向甲型和具有增强的缠结的手性阶段。特别感兴趣的是一种高度纠缠的相位,中间场发生的零净助焊剂具有交错的手性,与其同伴阶段概述了高纠缠的心形区域,缠结的核心。我们将我们的结果与二维蜂窝格子的C 3对称簇的梯子进行比较,并在二维极限中提供可能的旋转液体的洞察。

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