论文标题

异源卢德温伊斯的结构,磁性和热力学特性:Cu2gabo5和Cu2albo5

Structure, magnetic and thermodynamic properties of heterometallic ludwigites: Cu2GaBO5 and Cu2AlBO5

论文作者

Eremina, R. M., Gavrilova, T. P., Moshkina, E. M., Gilmutdinov, I. F., Batulin, R. G., Gurzhiy, V. V., Grinenko, V., Inosov, D. S.

论文摘要

我们介绍了对Ludwigite家族的两个杂氧硼酸盐高质量单晶的结构,磁和热力学特性的广泛研究:Cu $ _2 $ _2 $ gabo $ _5 $ _5 $和CU $ _2 $ _2 $ _2 $ albo $ _5 $ _5 $ _5 $ _5 $在2 k. ga/ga中的ga/ga ga/ga。 Cu $ _2 $ GABO $ _5 $和CU $ _2 $ albo $ _5 $的单元单元包含四个金属离子的非级别晶体学位。 Cu $ _2 $ gabo $ _5 $的四个非晶体离子的四个非晶体晶体学位的结构中的两个地点完全由Cu Atoms占据,它们形成了沿A轴的准一维链。对于Cu $ _2 $ albo $ _5 $,所有站点均由Al和Cu Atoms部分占据。对特定热量的磁化率和磁性贡献的低温数据的联合分析表明,分别在$ t _ {\ rm n} \近3美元和4 k的情况下,在$ t _ {\ rm n}中表现出抗铁磁过渡。减去声子贡献后,获得了两种化合物的特定热量的磁贡献。结果表明,高于2.5 t的外部磁场导致磁相变的扩大,表明抑制了远距离抗铁磁序。

We present an extensive study of the structural, magnetic and thermodynamic properties of high-quality monocrystals of the two heterometallic oxyborates from the ludwigite family: Cu$_2$GaBO$_5$ and Cu$_2$AlBO$_5$ in the temperature range above 2 K. The distinctive feature of the investigated structures is the selective distribution of Cu and Ga/Al cations. The unit cell of Cu$_2$GaBO$_5$ and Cu$_2$AlBO$_5$ contains four nonequivalent crystallographic sites of metal ions. Two sites in the structure from four nonequivalent crystallographic sites of metal ions of Cu$_2$GaBO$_5$ are fully occupied by Cu atoms which form the quasi one-dimensional chains along the a-axis. For Cu$_2$AlBO$_5$ all sites are partially occupied by Al and Cu atoms. The joint analysis of low-temperature data on magnetic susceptibility and magnetic contribution to the specific heat showed that Cu$_2$AlBO$_5$ and Cu$_2$GaBO$_5$ exhibit an antiferromagnetic transition at $T_{\rm N} \approx 3$ and 4 K, respectively. The magnetic contributions to the specific heat for both compounds were obtained after subtracting the phonon contribution. It is shown that the external magnetic field above 2.5 T leads to a broadening of the magnetic phase transition indicating suppression of the long-range antiferromagnetic order.

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