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镍酸盐中的朗道电荷和自旋有序理论。

Landau theory of charge and spin ordering in the nickelates.

机构信息

Physics Department, University of California, Santa Barbara, California 93106, USA.

出版信息

Phys Rev Lett. 2011 Jan 7;106(1):016405. doi: 10.1103/PhysRevLett.106.016405. Epub 2011 Jan 6.

Abstract

Guided by experiment and band structure, we introduce and study a phenomenological Landau theory for the unusual charge and spin ordering associated with the Mott transition in the perovskite nickelates, with chemical formula RNiO3, where R=Pr, Nd,Sm, Eu, Ho, Y, and Lu. While the Landau theory has general applicability, we show that for the most conducting materials, R=Pr, Nd, both types of order can be understood in terms of a nearly nested spin-density wave. Furthermore, we argue that in this regime, the charge ordering is reliant upon the orthorhombic symmetry of the sample, and therefore proportional to the magnitude of the orthorhombic distortion. The first order nature of the phase transitions is also explained. We briefly show by example how the theory is readily adapted to modified geometries such as nickelate films.

摘要

在实验和能带结构的指导下,我们引入并研究了一种唯象的朗道理论,用于研究钙钛矿镍氧化物 RNiO3(其中 R=Pr、Nd、Sm、Eu、Ho、Y 和 Lu)中与莫特转变相关的异常电荷和自旋有序现象。虽然朗道理论具有普遍适用性,但我们表明,对于导电性最强的材料(R=Pr、Nd),这两种有序都可以用近乎嵌套的自旋密度波来理解。此外,我们认为在这个区域,电荷有序取决于样品的正交对称性,因此与正交畸变的大小成正比。相变的一级性质也得到了解释。我们通过示例简要展示了如何轻松地将该理论应用于修改后的几何形状,如镍酸盐薄膜。

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