论文标题

装饰正方形的静态和谐振属性kagome晶格化合物kcu $ _7 $(teo $ _4 $)(所以$ _4 $)$ _ 5 $ cl

Static and resonant properties of decorated square kagome lattice compound KCu$_7$(TeO$_4$)(SO$_4$)$_5$Cl

论文作者

Markina, M. M., Berdonosov, P. S., Vasilchikova, T. M., Zakharov, K. V., Murtazoev, A. F., Dolgikh, V. A., Moskin, A. V., Glazkov, V. N., Smirnov, A. I., Vasiliev, A. N.

论文摘要

Nabokoite的磁性子系统,KCU $ _7 $(TEO $ _4 $)(SO $ _4 $)$ _ 5 $ Cl,是由铜离子形成由准溶解离子装饰的弯曲方形kagomélattice构成的。这种组合决定了这种化合物在电子旋转共振(ESR)光谱,介电介电常数$ \ varepsilon $,磁化$ m $和特定热量$ C_P $测量中所证明的特殊物理特性。在降低温度下,磁化易感性$χ= m/h $通过约150 K时低维磁系统固有的宽阔驼峰,在$ t_n = 3.2 $ k时在抗磁相变的尖峰。 $ c_p(t,h)$曲线在$ t_ {peak} = 5.7 $ k的磁场上展示了其他类似峰的异常。后者可以归因于在方形Kagomélattice的磁激发光谱中填充单线 - 三个细节间隙的低洼单元激励[J.Richter,O.Derzhko和J.Schnack,Phys。修订版B \ textbf {105}(2022)144427]。 ESR光谱法提供了低于$ t_n $的抗磁性结构的迹象。单独的问题是在低温下观察$ \ varepsilon $中抗纤维电型行为,这暂时降低了对称性,并部分提高了用弯曲的方形Kagomélattice的铜离子的磁相互作用的挫败感。这些复杂的热力学和谐振特性向Nabokoite中的两个弱耦合的磁性子系统表明,即方形Kagomé晶格层中的自旋 - 液体和由装饰离子代表的抗fiferromagnet。

The magnetic subsystem of nabokoite, KCu$_7$(TeO$_4$)(SO$_4$)$_5$Cl, is constituted by copper ions forming a buckled square kagomé lattice decorated by quasi-isolated ions. This combination determines peculiar physical properties of this compound evidenced in electron spin resonance (ESR) spectroscopy, dielectric permittivity $\varepsilon$, magnetization $M$ and specific heat $C_p$ measurements. At lowering temperature, the magnetic susceptibility $χ= M/H$ passes through a broad hump inherent for low-dimensional magnetic systems at about 150 K and a sharp peak at antiferromagnetic phase transition at $T_N = 3.2 $K. The $C_p(T,H)$ curves demonstrate additional peak-like anomaly at $T_{peak}= 5.7$K robust to magnetic field. The latter can be ascribed to low-lying singlet excitations filling the singlet-triplet gap in magnetic excitation spectrum of the square kagomé lattice [J.Richter, O.Derzhko and J.Schnack, Phys. Rev. B \textbf{105} (2022) 144427]. ESR spectroscopy provides indications that antiferromagnetic structure below $T_N$ is non-collinear. Separate issue is the observation of antiferroelectric-type behavior in $\varepsilon$ at low temperatures, which tentatively reduces the symmetry and partially lifts frustration of magnetic interactions of decorating copper ions with buckled square kagomé lattice. These complex thermodynamic and resonant properties signal the presence of two weakly coupled magnetic subsystems in nabokoite, namely a spin-liquid in square kagomé lattice layers and an antiferromagnet represented by decorating ions.

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