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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Disordered, spin liquid, and valence-bond ordered phases of kagome lattice quantum Ising models with transverse field and XXZ dynamics
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Disordered, spin liquid, and valence-bond ordered phases of kagome lattice quantum Ising models with transverse field and XXZ dynamics

机译:具有横向场和XXZ动力学的Kagome晶格量子Ising模型的无序,自旋液体和价键有序相

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摘要

We study general conditions in which disordered, spin liquid, and valence-bond ordered phases, occur in the Kagome lattice quantum Ising antiferromagnets. Different quantum dynamical processes in the Ising model, with and without total Ising spin conserved, are analytically shown to yield all three characteristic quantum paramagnetic phases in the Kagome system. Special emphasis is given to the XXZ model that can be sensibly compared to the Kagome lattice Heisenberg antiferromagnet. It is explicitly demonstrated that the total-spin-conserving dynamics can yield a resonant valence bond liquid phase with very short-ranged correlations, but also a valence-bond ordered phase compatible with the one proposed to explain the seemingly gapless singlet states of the Heisenberg antiferromagnet on the Kagome lattice. Likely consequences for generic spin models are discussed. The analysis combines compact U(1) gauge theory, duality transformations, lattice-field-theoretical methods, and variational approach.
机译:我们研究了在Kagome晶格量子伊辛反铁磁体中发生无序,自旋液体和价键有序相的一般条件。分析表明,在具有和不具有总伊辛自旋的情况下,伊辛模型中的不同量子动力学过程可在Kagome系统中产生所有三个特征量子顺磁相。 XXZ模型得到了特别的强调,可以与Kagome晶格Heisenberg反铁磁体进行合理地比较。明确表明,总自旋动力学可以产生具有非常短程相关性的共振价键液相,但也可以与与解释海森堡看似无间隙的单重态的相兼容的价键有序相。 Kagome晶格上的反铁磁体。讨论了通用自旋模型的可能后果。该分析结合了紧凑的U(1)规范理论,对偶变换,晶格场理论方法和变分方法。

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