论文标题

Square-tattice Cupola System BA(TIO)CU $ _4 $(PO $ _4 $)$ _ 4 $中的旋转动力学

Spin dynamics in the square-lattice cupola system Ba(TiO)Cu$_4$(PO$_4$)$_4$

论文作者

Testa, Luc, Babkevich, Peter, Kato, Yasuyuki, Kimura, Kenta, Favre, Virgile, Rodriguez-Rivera, Jose A., Ollivier, Jacques, Raymond, Stéphane, Kimura, Tsuyoshi, Motome, Yukitoshi, Normand, Bruce, Rønnow, Henrik M.

论文摘要

我们报告了Spin-1/2 Antiferromagnet BA(TIO)Cu $ _4 $(PO $ _4 $)$ _ 4 $上的高分辨率单晶非弹性中子散射测量。该材料由四个位\ cucla“结构的层形成,以二维(2D)正方形的磁性磁性的相当特殊的实现。强烈的Dzyaloshinskii-Moriya(DM)相互作用在每个Cupola,或Plaquette中的属性中,多种多样的属性都不在多种多样,而这些属性是多种多样的。具有自旋和空间各向异性的海森贝格模型,我们在零场和最多5 t的字段中测量了磁性激发,找到具有多个特征特征的复杂模式结构,使我们能够通过在线性旋转近似中提取所有相关的磁相互作用。拼接和平面间的耦合,其中plaquette dm相互作用在实施强大的磁性顺序以及在Brillouin-Zone中心打开较大的间隙方面具有启发性,我们将观测值放在我们对Spin-1/2 Square-2 Square-2-Square-latter的材料的普遍相图中的观察结果,以探索Ansies Asistation Asistation Asistation Asies andistation andistation Asies andiSations andistation andistations ancouts andiSations anfimations andiSations。

We report high-resolution single-crystal inelastic neutron scattering measurements on the spin-1/2 antiferromagnet Ba(TiO)Cu$_4$(PO$_4$)$_4$. This material is formed from layers of four-site \cupola" structures, oriented alternately upwards and downwards, which constitute a rather special realization of two-dimensional (2D) square-lattice magnetism. The strong Dzyaloshinskii-Moriya (DM) interaction within each cupola, or plaquette, unit has a geometry largely unexplored among the numerous studies of magnetic properties in 2D Heisenberg models with spin and spatial anisotropies. We have measured the magnetic excitations at zero field and in fields up to 5 T, finding a complex mode structure with multiple characteristic features that allow us to extract all the relevant magnetic interactions by modelling within the linear spin-wave approximation. We demonstrate that Ba(TiO)Cu$_4$(PO$_4$)$_4$ is a checkerboard system with almost equal intra- and inter-plaquette couplings, in which the intra-plaquette DM interaction is instrumental both in enforcing robust magnetic order and in opening a large gap at the Brillouin-zone center. We place our observations in the perspective of generalized phase diagrams for spin-1/2 square-lattice models and materials, where exploring anisotropies and frustration as routes to quantum disorder remains a frontier research problem.

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