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Disordered flat phase in a solid-on-solid model of fcc(110) surfaces and dimer states in quantum spin-1/2 chains

机译:fcc(110)表面的固体-固体模型中的无序平面相和量子自旋1/2链中的二聚体状态

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摘要

We present a restricted solid-on-solid Hamiltonian for fcc(110) surfaces. It is the simplest generalization of the exactly solvable body-centered solid-on-solid model which is able to describe a (2 X 1) missing-row reconstructed surface. We study this model by mapping it onto a quantum spin-1/2 chain of the Heisenberg type, with second and third neighbor S(i)(z)S(j)z couplings. The ground-state phase diagram of the spin-chain model is studied by exact diagonalization of finite chains up to N = 28 sites, as well as through analytical techniques. We find four phases in the phase diagram: two ordered phases in which the spins have a Neel type of long-range order (an unreconstructed and a missing-row reconstructed phase, in the surface language), a spin-liquid phase (representing a rough surface), and an intermediate dimer phase which breaks translational invariance and has a doubly degenerate ground state, corresponding to a disordered flat surface. The transition from the (2 x 1) reconstructed phase to the disordered flat phase belongs to the two-dimensional Ising universality class. A critical (preroughening) line with varying exponents separates the unreconstructed phase from the disordered flat phase. The possible experimental signatures of the disordered flat phase are discussed.
机译:我们为fcc(110)曲面提供了一个受限制的固体对固体哈密顿量。这是可求解的以体心为中心的实体对实体模型的最简单概括,该模型能够描述(2 X 1)缺失行的重建曲面。我们通过将模型映射到具有第二和第三相邻S(i)(z)S(j)z耦合的Heisenberg类型的量子自旋1/2链上来研究该模型。自旋链模型的基态相图是通过有限链的精确对角化(最多N = 28个位点)以及通过分析技术来研究的。我们在相图中找到四个阶段:两个有序阶段,其中自旋具有Neel类型的长程顺序(按表面语言,是未重构的行和缺少行的重构相),是自旋液相(表示a粗糙的表面)和一个中间二聚体相,该相二聚体相将打破平移不变性并具有双重简并的基态,对应于无序的平坦表面。从(2 x 1)重建阶段到无序平坦阶段的过渡属于二维Ising通用性类。具有不同指数的临界(强化)线将未重构相与无序平坦相分离。讨论了无序平相的可能实验特征。

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