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Incommensurate Magnetic Structure in Copper Metaborate

机译:偏硼酸铜中不相称的磁性结构

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Based on the experimental data on copper metaborate single crystals obtained in X-ray and neutron diffraction studies and heat capacity, magnetic susceptibility, and muon spin relaxation measurements, a phenomenological theory of the incommensurate magnetic structure of this crystal was developed. Considering the space group of the crystal, I4-bar 2d, Lifshits invariants were included into its thermodynamic potential. An analysis showed that magnetic structure formation at 10-20 K was dominated by the subsystem of copper spins in 4b unit cell sites. Below 10 K, the role played by the magnetic subsystem of copper spins in 8d unit cell sites in the formation of the magnetic structure of copper metaborate substantially increased. This caused a sharp increase in the wave vector of the incommensurate structure as temperature lowered. Numerical simulation of the temperature dependence of the wave vector of the helix and the heat capacity of the crystal gave a satisfactory description of the experimental data. This simulation was used to estimate the parameters of the phenomenological thermodynamic potential of the magnetic system of copper metaborate.
机译:基于在X射线和中子衍射研究中获得的偏硼酸铜单晶体的实验数据,以及热容量,磁化率和μ子自旋弛豫测量结果,人们开发了这种晶体磁结构不相称的现象学理论。考虑到晶体的空间群,I4-bar 2d,Lifshits不变量包括在其热力学势中。分析表明,在10-20 K的磁性结构形成受4b晶胞位点的铜自旋子系统支配。低于10 K时,铜自旋的磁性子系统在8d晶胞位点形成的偏硼酸铜的磁性结构中所起的作用大大增加。随着温度降低,这导致不相称结构的波矢急剧增加。螺旋波矢量对温度的依赖性和晶体的热容的数值模拟给出了令人满意的实验数据描述。该模拟用于估算偏硼酸铜磁性系统的现象热力学势的参数。

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