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Theory of the field-revealed Kitaev spin liquid

机译:现场揭示的Kitaev自旋液体理论

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摘要

Elementary excitations in entangled states such as quantum spin liquids may exhibit exotic statistics different from those obeyed by fundamental bosons and fermions. Non-Abelian anyons exist in a Kitaev spin liquid—the ground state of an exactly solvable model. A smoking-gun signature of these excitations, namely a half-integer quantized thermal Hall conductivity, was recently reported in α-RuCl3. While fascinating, a microscopic theory for this phenomenon remains elusive because the pure Kitaev model cannot display this effect in an intermediate magnetic field. Here we present a microscopic theory of the Kitaev spin liquid emerging between the low- and high-field states. Essential to this result is an antiferromagnetic off-diagonal symmetric interaction which allows the Kitaev spin liquid to protrude from the ferromagnetic Kitaev limit under a magnetic field. This generic model displays a strong field anisotropy, and we predict a wide spin liquid regime when the field is perpendicular to the honeycomb plane.
机译:纠缠态的基本激发(例如量子自旋液体)可能表现出与基本玻色子和费米子所服从的不同的奇异统计。 Kitaev自旋液体中存在非阿贝尔正离子,这是可完全求解的模型的基态。最近在α-RuCl3中报道了这些激发的烟枪特征,即半整数量化的热霍尔电导率。令人着迷的是,这种现象的微观理论仍然难以捉摸,因为纯Kitaev模型无法在中间磁场中显示这种效应。在这里,我们介绍在低场态和高场态之间出现的Kitaev自旋液体的微观理论。该结果的关键是反铁磁非对角对称相互作用,该相互作用使Kitaev自旋液体在磁场下从铁磁Kitaev极限中突出。该通用模型显示出很强的场各向异性,并且当场垂直于蜂窝平面时,我们可以预测宽的自旋液体状态。

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