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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Spin reorientation in the square-lattice antiferromagnets RMnAsO (R = Ce, Nd): Density functional analysis of the spin-exchange interactions between the rare-earth and transition-metal ions
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Spin reorientation in the square-lattice antiferromagnets RMnAsO (R = Ce, Nd): Density functional analysis of the spin-exchange interactions between the rare-earth and transition-metal ions

机译:方格反铁磁体RMnAsO(R = Ce,Nd)中的自旋重新取向:稀土与过渡金属离子之间自旋交换相互作用的密度泛函分析

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摘要

The spin reorientation (SR) phenomenon of the square-lattice antiferromagnets RMnAsO (R = Ce, Nd) was investigated by analyzing the spin-exchange interactions between the rare-earth and the transition-metal ions (R ~(3+) and Mn ~(2+), respectively) on the basis of density functional calculations. It is found that the symmetry and strength of the Dzyaloshinskii-Moriya (DM) interaction are determined primarily by the partially filled 4f states of the R ~(3+) ions and that the DM and biquadratic (BQ) exchanges between the R ~(3+) and the Mn ~(2+) ions are unusually strong and control the observed spin reorientation phenomenon. Below their SR temperature, the Mn ~(2+) and Ce ~(3+) moments are orthogonal in CeMnAsO but are collinear in NdMnAsO, because the DM interaction dominates over the BQ interaction for CeMnAsO, while the opposite is the case for NdMnAsO. Experiments designed to test the implications of our findings are proposed.
机译:通过分析稀土与过渡金属离子(R〜(3+)和Mn之间的自旋交换相互作用,研究了方格反铁磁体RMnAsO(R = Ce,Nd)的自旋取向(SR)现象。 〜(2+))分别基于密度泛函计算。发现Dzyaloshinskii-Moriya(DM)相互作用的对称性和强度主要由R〜(3+)离子的部分填充4f状态决定,并且DM和R〜(之间的双二次(BQ)交换。 3+)和Mn〜(2+)离子异常强,并且可以控制观察到的自旋重取向现象。在其SR温度以下,Mn〜(2+)和Ce〜(3+)矩在CeMnAsO中正交,但在NdMnAsO中共线,这是因为DM相互作用优于CeMnAsO的BQ相互作用,而NdMnAsO则相反。 。提出了旨在测试我们的发现含义的实验。

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