论文标题

kagome抗fiferromagnet的动力自旋相关性

Dynamical spin correlations of the kagome antiferromagnet

论文作者

Prelovšek, P., Gomilšek, M., Arh, T., Zorko, A.

论文摘要

温度依赖性的动力自旋相关性可以通过多种实验技术轻松访问,具有提供量子自旋液体和其他有趣的动态状态的独特指纹的潜力。在这项工作中,我们介绍了抗铁磁性(AFM)Heisenberg Spin-1/2模型的温度依赖性动力学自旋因子$ s({\ bf q},ω)$,以及其他dzyaloshinskii-moriya(dm)相互作用。使用最多$ n = 30 $站点的晶格上的有限温度lanczos方法,我们发现即使没有DM相互作用,手性低能旋转自旋波动的$ 120^\ circ afm订单参数占主导地位的动态响应。这导致了$ s({\ bf q},ω)$的非平凡频率依赖性,并且在扩展的布里群区域的M点出现了明显的低频模式。添加平面外DM交互$ d^z $产生各向异性动力响应,平面内旋转波动的软化,最终以$ d^z> 0.1 J $的形式发作。我们的结果与现有的非弹性中子散射和依赖温度的NMR旋转莱特放松率($ 1/t_1 $)的数据非常吻合ycu $ _3 $(oh)$ _ 6 $ cl $ _3 $,其中大约$ d^z \大约0.25 j $相互作用会强烈影响旋转动力学。

Temperature-dependent dynamical spin correlations, which can be readily accessed via a variety of experimental techniques, hold the potential of offering a unique fingerprint of quantum spin liquids and other intriguing dynamical states. In this work we present an in-depth study of the temperature-dependent dynamical spin structure factor $S({\bf q}, ω)$ of the antiferromagnetic (AFM) Heisenberg spin-1/2 model on the kagome lattice with additional Dzyaloshinskii--Moriya (DM) interactions. Using the finite-temperature Lanczos method on lattices with up to $N = 30$ sites we find that even without DM interactions, chiral low-energy spin fluctuations of the $120^\circ$ AFM order parameter dominate the dynamical response. This leads to a nontrivial frequency dependence of $S({\bf q}, ω)$ and the appearance of a pronounced low-frequency mode at the M point of the extended Brillouin zone. Adding an out-of-plane DM interactions $D^z$ gives rise to an anisotropic dynamical response, a softening of in-plane spin fluctuations, and, ultimately, the onset of a coplanar AFM ground-state order at $D^z > 0.1 J$. Our results are in very good agreement with existing inelastic neutron scattering and temperature-dependent NMR spin-lattice relaxation rate ($1/T_1$) data on the paradigmatic kagome AFM herbertsmithite, where the effect of its small $D^z$ on the dynamical spin correlations is shown to be rather small, as well as with $1/T_1$ data on the novel kagome AFM YCu$_3$(OH)$_6$Cl$_3$, where its substantial $D^z \approx 0.25 J$ interaction is found to strongly affect the spin dynamics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源