论文标题

Kitaev Quantum-Spin-Liquid候选$α$ -rucl $ _3 $中磁性分数激发的证据

Evidence for magnetic fractional excitations in a Kitaev quantum-spin-liquid candidate $α$-RuCl$_3$

论文作者

Ran, Kejing, Wang, Jinghui, Bao, Song, Cai, Zhengwei, Shangguan, Yanyan, Ma, Zhen, Wang, Wei, Dong, Zhao-Yang, Cermák, P., Schneidewind, A., Meng, Siqin, Lu, Zhilun, Yu, Shun-Li, Li, Jian-Xin, Wen, Jinsheng

论文摘要

$α$ -rucl $ _3 $进行了广泛的研究,因为它靠近Kitaev Quantum-Spin-liquid(QSL)阶段,并且通过调整竞争相互作用来接近它的可能性。在这里,我们介绍了$α$ -RUCL $ _3 $单晶的首次极化非弹性中子散射研究,以探索布里鲁因区中心的$γ$点附近的散射连续性,该中心是由Kitaev QSL州造成的,但没有具体的证据。通过极化分析,我们发现,尽管M点周围的自旋波激发在过渡温度上方$ t _ {\ rm n} $上消失,但$γ$点附近的纯磁性连续激发在温度下具有强大的态度。此外,通过使用簇摄动理论来计算动力自旋旋转相关函数,我们根据$ k $ - $γ$模型得出磁性分散光谱,该模型涉及-7.2 MEV的铁磁kitaev相互作用,而偏置相互作用和偏置相互作用为5.6 MEV。我们发现该模型不仅可以复制M点周围的自旋波激发光谱,还可以复制$γ$点附近的非自旋波连续磁激励。这些结果提供了围绕$γ$点的分数激发的证据,该点起源于Kitaev QSL状态,并进一步支持$ K $ - $γ$模型的有效性,是描述$α$ -rucl $ _3 $的有效最小旋转模型。

$α$-RuCl$_3$ has been studied extensively because of its proximity to the Kitaev quantum-spin-liquid (QSL) phase and the possibility of approaching it by tuning the competing interactions. Here we present the first polarized inelastic neutron scattering study on $α$-RuCl$_3$ single crystals to explore the scattering continuum around the $Γ$ point at the Brillouin zone center, which was hypothesized to be resulting from the Kitaev QSL state but without concrete evidence. With polarization analyses, we find that while the spin-wave excitations around the M point vanish above the transition temperature $T_{\rm N}$, the pure magnetic continuous excitations around the $Γ$ point are robust against temperature. Furthermore, by calculating the dynamical spin-spin correlation function using the cluster perturbation theory, we derive magnetic dispersion spectra based on the $K$-$Γ$ model, which involves with a ferromagnetic Kitaev interaction of -7.2 meV and an off-diagonal interaction of 5.6 meV. We find this model can reproduce not only the spin-wave excitation spectra around the M point, but also the non-spin-wave continuous magnetic excitations around the $Γ$ point. These results provide evidence for the existence of fractional excitations around the $Γ$ point originating from the Kitaev QSL state, and further support the validity of the $K$-$Γ$ model as the effective minimal spin model to describe $α$-RuCl$_3$.

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