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优化有效势模型用于双钙钛矿 Sr₂ - xYxVMoO₆ 和 Sr₂ - xYxVTcO₆。

Optimized effective potential model for the double perovskites Sr₂ - xYxVMoO₆ and Sr₂ - xYxVTcO₆.

机构信息

National Institute for Materials Science, 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan.

出版信息

J Phys Condens Matter. 2011 Aug 17;23(32):326002. doi: 10.1088/0953-8984/23/32/326002. Epub 2011 Jul 25.

DOI:10.1088/0953-8984/23/32/326002
PMID:21785186
Abstract

In an attempt to explore half-metallic properties of the double perovskites Sr(2 - x)Y(x)VMoO(6) and Sr(2 - x)Y(x)VTcO(6), we construct an effective low-energy model, which describes the behavior of the t(2g) states of these compounds. All parameters of such a model are derived rigorously on the basis of first-principles electronic structure calculations. In order to solve this model, we employ the optimized effective potential method and treat the correlation interactions in the random phase approximation. Although correlation interactions considerably reduce the intraatomic exchange splitting in comparison with the Hartree-Fock approach, this splitting still substantially exceeds the typical values obtained in the local-spin-density approximation (LSDA), which alters many predictions based on the LSDA. Our main results are summarized as follows. (i) All ferromagnetic states are expected to be half-metallic. However, their energies are generally higher than those of the ferrimagnetic ordering between V and Mo/Tc sites (except Sr(2)VMoO(6)). (ii) All ferrimagnetic states are metallic (except fully insulating Y(2)VTcO(6)) and no half-metallic antiferromagnetism has been found. (iii) Moreover, many of the ferrimagnetic structures appear to be unstable with respect to the spin-spiral alignment. Thus, the true magnetic ground state of these systems is expected to be more complex. In addition, we discuss several methodological issues related to nonuniqueness of the effective potential for the half-metallic and magnetic insulating states.

摘要

为了探索双钙钛矿 Sr(2 - x)Y(x)VMoO(6) 和 Sr(2 - x)Y(x)VTcO(6) 的半金属性质,我们构建了一个有效的低能模型,用于描述这些化合物中 t(2g) 态的行为。该模型的所有参数都是基于第一性原理电子结构计算严格推导出来的。为了求解这个模型,我们采用了优化有效势方法,并在随机相位近似中处理相关相互作用。尽管相关相互作用使得原子内交换分裂与 Hartree-Fock 方法相比显著减小,但这个分裂仍然远远超过局域自旋密度近似(LSDA)中的典型值,这改变了许多基于 LSDA 的预测。我们的主要结果总结如下:(i)所有铁磁态都有望是半金属的。然而,它们的能量通常高于 V 和 Mo/Tc 位之间的铁磁有序(除了 Sr(2)VMoO(6))。(ii)所有铁磁态都是金属的(除了完全绝缘的 Y(2)VTcO(6)),没有发现半金属反铁磁性。(iii)此外,许多铁磁结构相对于螺旋自旋排列似乎是不稳定的。因此,这些体系的真实磁基态预计会更加复杂。此外,我们还讨论了与半金属和磁性绝缘态有效势的非唯一性相关的几个方法学问题。

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