论文标题

旋转动力和交流互动tbfeo $ _3 $与非kramers稀有离子

Spin dynamics and exchange interaction in orthoferrite TbFeO$_3$ with non-Kramers rare-earth ion

论文作者

Skorobogatov, S. A., Shaykhutdinov, K. A., Balaev, D. A., Pavlovskii, M. S., Krasikov, A. A., Terentjev, K. Yu.

论文摘要

已经研究了正常的tbfeo $ _3 $ perovskite的低温旋转动力学。已经发现,非弹性中子散射(INS)频谱包含两个模式,对应于化合物中的不同sublattices。铁子系统以t $ _n $ = 632 K的方式订购抗磁性,并展示高能量的木剂分散剂。已经使用线性自旋波理论描述了该子系统的磁化动力学,我们的解决方案在面内和平面外交换相互作用之间产生了相当大的各向异性。此方法以前用于描述TMFEO $ _3 $化合物中的木剂分散体。与TB $^{3+} $离子相对应的三个非分散晶体电场水平已在40 MEV以下的区域建立,大约为17、26和35 MEV。在不同温度下进行弥漫性散射的研究阐明了磁相关长度的行为。 TB $^{3+} $ ion子系统的行为已在点电荷模型的框架中进行数值描述。数值数据与实验以及将单离子近似的一般概念吻合到了原骨钙钛矿的稀土子系统上。

The low-temperature spin dynamics of the orthorhombic TbFeO$_3$ perovskite has been studied. It has been found that the inelastic neutron scattering (INS) spectrum contains two modes corresponding to different sublattices in the compound. The iron subsystem orders antiferromagnetically at T$_N$ = 632 K and exhibits the high-energy magnon dispersion. Magnetic dynamics of this subsystem has been described using the linear spin wave theory and our solution yields sizable anisotropy between in-plane and out-of-plane exchange interactions. This approach was previously used to describe the magnon dispersion in the TmFeO$_3$ compound. Three non-dispersive crystal electric field levels corresponding to Tb$^{3+}$ ions have been established in the region below 40 meV at about 17, 26, and 35 meV. Study of diffuse scattering at different temperatures has elucidated the behavior of the magnetic correlation length. The behavior of the Tb$^{3+}$ ion subsystem has been numerically described in the framework of the point charge model. The numerical data agree satisfactorily with the experiment and with the general concept of the single-ion approximation applied to the rare-earth subsystem of orthorhombic perovskites.

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