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从基泰耶链到伪装伊辛链的转变:应用于CoNb₂O₆

Transforming from Kitaev to Disguised Ising Chain: Application to CoNb_{2}O_{6}.

作者信息

Churchill Derek, Kee Hae-Young

机构信息

Department of Physics, <a href="https://ror.org/03dbr7087">University of Toronto</a>, Ontario, Canada M5S 1A7.

<a href="https://ror.org/01sdtdd95">Canadian Institute for Advanced Research</a>, CIFAR Program in Quantum Materials, Toronto, Ontario, Canada, M5G 1M1.

出版信息

Phys Rev Lett. 2024 Aug 2;133(5):056703. doi: 10.1103/PhysRevLett.133.056703.

Abstract

For many years, CoNb_{2}O_{6} has served as an exemplar of the one-dimensional Ising model. However, recent experimental and theoretical analyses challenge its applicability to this material. Prior to that, a tailored spin model for 3d^{7} systems such as Co^{2+}, known as the JKΓ model, has emerged, featuring Heisenberg (J), Kitaev (K), and Gamma (Γ) interactions. While these interactions are permitted by the symmetry of the system, their role in CoNb_{2}O_{6} remains enigmatic. We present a microscopic theory based on spin-orbit entangled J_{eff}=1/2 states, aimed at elucidating the roles of Kitaev and Gamma interactions in shaping Ising anisotropy. Leveraging strong coupling theory, we identify a dominant ferromagnetic Kitaev interaction. Furthermore, by comparing dynamical structure factors obtained via exact diagonalization with those from inelastic neutron scattering experiments, we find an antiferromagnetic Γ interaction, which dictates the Ising axis and explains the mechanism behind moment pinning. Our theory provides a microscopic origin for Ising behavior in spin-orbit coupled one-dimensional chains and posits CoNb_{2}O_{6} as a rare Kitaev chain.

摘要

多年来,CoNb₂O₆一直作为一维伊辛模型的范例。然而,最近的实验和理论分析对其在此材料中的适用性提出了挑战。在此之前,一种针对诸如Co²⁺等3d⁷体系的定制自旋模型——JKΓ模型出现了,其具有海森堡(J)、基泰耶夫(K)和伽马(Γ)相互作用。虽然这些相互作用由系统对称性所允许,但其在CoNb₂O₆中的作用仍然不明。我们提出了一种基于自旋 - 轨道纠缠的Jₑբբ = 1/2态的微观理论,旨在阐明基泰耶夫和伽马相互作用在形成伊辛各向异性中的作用。利用强耦合理论,我们确定了一个占主导的铁磁基泰耶夫相互作用。此外,通过将精确对角化得到的动力学结构因子与非弹性中子散射实验得到的进行比较,我们发现了一个反铁磁Γ相互作用,它决定了伊辛轴并解释了磁矩钉扎背后的机制。我们的理论为自旋 - 轨道耦合一维链中的伊辛行为提供了一个微观起源,并将CoNb₂O₆认定为一种罕见的基泰耶夫链。

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