论文标题

通过按disorder量子和伪岩石模式在基塔耶磁铁中的量子订购和伪金石的出现

Emergence of a nematic paramagnet via quantum order-by-disorder and pseudo-Goldstone modes in Kitaev magnets

论文作者

Gohlke, Matthias, Chern, Li Ern, Kee, Hae-Young, Kim, Yong Baek

论文摘要

在暴露于外部磁场的基塔夫材料中,非平凡相的出现最近是一项强化研究的主题。在这里,我们通过使用无限密度矩阵重新归一化组(IDMRG)和线性旋转波理论(LSWT)来阐明了针对此类材料提出的经典和量子自旋模型的现场诱导的基态之间的关系。我们认为$kγγ'$模型,其中$γ$和$γ'$是在主要的kitaev互动$ k $之上的偏外旋转交换。在沿$ [111] $方向上的磁场上,我们解释了nematic paramagnet的起源,它破坏了晶格 - 旋转对称性,并存在于量子模型中的磁场的扩展窗口中。这种现象可以理解为在沮丧的铁磁体中逐序的效果,并具有在相应的经典模型中发现的退化基态的连续歧管。我们使用基于矩阵操作员的时间演化来计算动态自旋结构因子,并将其与LSWT的预测进行比较。因此,我们为沿$ [111] $方向的外部磁场中的基塔夫材料上的吉塔夫材料上的未来非弹性中子散射实验提供了预测。特别是,列马磁铁表现出一种特征性的伪金石模式,这是由于通过量子波动升起的连续退化而产生的。

The appearance of nontrivial phases in Kitaev materials exposed to an external magnetic field has recently been a subject of intensive studies. Here, we elucidate the relation between the field-induced ground states of the classical and quantum spin models proposed for such materials, by using the infinite density matrix renormalization group (iDMRG) and the linear spin wave theory (LSWT). We consider the $K ΓΓ'$ model, where $Γ$ and $Γ'$ are off-diagonal spin exchanges on top of the dominant Kitaev interaction $K$. Focusing on the magnetic field along the $[111]$ direction, we explain the origin of the nematic paramagnet, which breaks the lattice-rotational symmetry and exists in an extended window of magnetic field, in the quantum model. This phenomenon can be understood as the effect of quantum order-by-disorder in the frustrated ferromagnet with a continuous manifold of degenerate ground states discovered in the corresponding classical model. We compute the dynamical spin structure factors using a matrix operator based time evolution and compare them with the predictions from LSWT. We, thus, provide predictions for future inelastic neutron scattering experiments on Kitaev materials in an external magnetic field along the $[111]$ direction. In particular, the nematic paramagnet exhibits a characteristic pseudo-Goldstone mode which results from the lifting of a continuous degeneracy via quantum fluctuations.

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