论文标题

在kagome晶格化合物中疾病诱导的旋转液样行为

Disorder-induced spin-liquid-like behavior in kagome-lattice compounds

论文作者

Ma, Zhen, Dong, Zhao-Yang, Wu, Si, Zhu, Yinghao, Bao, Song, Cai, Zhengwei, Wang, Wei, Shangguan, Yanyan, Wang, Jinghui, Ran, Kejing, Yu, Dehong, Deng, Guochu, Mole, Richard A., Li, Hai-Feng, Yu, Shun-Li, Li, Jian-Xin, Wen, Jinsheng

论文摘要

量子自旋液体(QSL)是一种受广泛研究的异国情调状态。但是,无处不在的疾病与QSL行为之间的关系尚不清楚。 Here, by performing comparative experimental studies on two kagomé-lattice QSL candidates, Tm$_3$Sb$_3$Zn$_2$O$_{14}$ and Tm$_3$Sb$_3$Mg$_2$O$_{14}$, which are isostructural to each other but with strong and weak structural disorder, respectively, we show unambiguously该疾病可以诱导旋转液样特征。尤其是,两种化合物均显示出主要的抗铁磁相互作用,居里 - 韦斯温度为-17.4和-28.7 k,用于tm $ _3 $ _3 $ _3 $ _3 $ _3 $ zn $ _2 $ _2 $ _2 $ _ {14} $ _ {14} $和tm $ _3 $ _3 $ _3 $ _3 $ _3 $ $ $ _2 $ _2 $ _2 K.特定的热结果表明存在以残留线性项为特征的无间隙磁激发。低温下通过非弹性中子散射(INS)获得的磁激发光谱显示出广泛的连续性。所有这些观察结果与QSL的观察一致。但是,我们在TM $ _3 $ sb $ _3 $ zn $ _2 $ o $ _ {14} $中发现,由于磁性TM $^{3+} $随机混合而产生的强烈混乱,而非磁性Zn $^{2+} $,与这些低端的磁性兴奋相比,与这些相关性相关的是实质性的。 tm $ _3 $ sb $ _3 $ mg $ _2 $ o $ _ {14} $,其混乱少得多。我们认为,Zn $^{2+} $/mg $^{2+} $站点的TM $^{3+} $离子的有效旋转产生了低能的磁激励,并且随机占用的量决定了激发强度。这些结果提供了直接证据表明由QSL引起的QSL模仿。

Quantum spin liquids (QSLs) are an exotic state of matter that is subject to extensive research. However, the relationship between the ubiquitous disorder and the QSL behaviors is still unclear. Here, by performing comparative experimental studies on two kagomé-lattice QSL candidates, Tm$_3$Sb$_3$Zn$_2$O$_{14}$ and Tm$_3$Sb$_3$Mg$_2$O$_{14}$, which are isostructural to each other but with strong and weak structural disorder, respectively, we show unambiguously that the disorder can induce spin-liquid-like features. In particular, both compounds show dominant antiferromagnetic interactions with a Curie-Weiss temperature of -17.4 and -28.7 K for Tm$_3$Sb$_3$Zn$_2$O$_{14}$ and Tm$_3$Sb$_3$Mg$_2$O$_{14}$, respectively, but remain disordered down to about 0.05 K. Specific heat results suggest the presence of gapless magnetic excitations characterized by a residual linear term. Magnetic excitation spectra obtained by inelastic neutron scattering (INS) at low temperatures display broad continua. All these observations are consistent with those of a QSL. However, we find in Tm$_3$Sb$_3$Zn$_2$O$_{14}$ which has strong disorder resulting from the random mixing of the magnetic Tm$^{3+}$ and nonmagnetic Zn$^{2+}$, that the low-energy magnetic excitations observed in the specific heat and INS measurements are substantially enhanced, compared to those of Tm$_3$Sb$_3$Mg$_2$O$_{14}$ which has much less disorder. We believe that the effective spins of the Tm$^{3+}$ ions in the Zn$^{2+}$/Mg$^{2+}$ sites give rise to the low-energy magnetic excitations, and the amount of the random occupancy determines the excitation strength. These results provide direct evidence of the mimicry of a QSL caused by disorder.

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