Terada Noriki
J Phys Condens Matter. 2014 Nov 12;26(45):453202. doi: 10.1088/0953-8984/26/45/453202.
Coupling between noncollinear magnetic ordering and ferroelectricicty in magnetoelectric multiferroics has been extensively studied in the last decade. Delafossite family compounds with triangular lattice structure provide a great opportunity to study the coupling between spin and electric dipole in multiferroics due to the variety of magnetic phases with different symmetry. This review introduces the magnetic and ferroelectric phase transitions in delafossite ferrites, CuFe(1-x)X(x)O(2) (X = Al, Ga), AgFeO(2) and the related compound α-NaFeO(2). In CuFeO(2), the ferroelectric phase appears under a magnetic field or chemical substitution. The proper screw magnetic ordering with the magnetic point group 21', which has been determined by detailed analysis in neutron diffraction experiments, induces the ferroelectric polarization along the monoclinic b axis in CuFeO2. The cycloidal magnetic orderings are realized in AgFeO(2) and α-NaFeO(2), which are of the point group m1' allowing polarization in the ac plane. The emergence of ferroelectric polarization can be explained by both the extended inverse Dzyaloshinsky-Moriya effect and the d − p hybridization mechanism. These mechanisms are supported by experimental evidence in CuFe(1-x)Ga(x)O2. The polarized neutron diffraction experiment demonstrated one-to-one correspondence between ferroelectric polarization and spin helicity, S(i) × S(j). The incommensurate orbital ordering with 2 Q wave vector, observed by the soft x-ray resonant diffraction experiment, proved that the spin-orbit interaction ties spin and orbital orders to each other, playing a crucial role for the emergence of ferroelectricity in CuFe(1-x)Ga(x)O2.
在过去十年中,磁电多铁性材料中非共线磁有序与铁电性之间的耦合受到了广泛研究。具有三角晶格结构的铜铁矿族化合物由于存在多种不同对称性的磁相,为研究多铁性材料中自旋与电偶极子之间的耦合提供了绝佳机会。本文综述了铜铁矿铁氧体、CuFe(1-x)X(x)O(2)(X = Al、Ga)、AgFeO(2)以及相关化合物α-NaFeO(2)中的磁相变和铁电相变。在CuFeO(2)中,铁电相出现在磁场或化学取代作用下。通过中子衍射实验的详细分析确定的具有磁点群21'的适当螺旋磁有序,在CuFeO2中沿单斜b轴诱导出铁电极化。在AgFeO(2)和α-NaFeO(2)中实现了摆线磁有序,它们属于允许在ac平面极化的点群m1'。铁电极化的出现可以通过扩展的逆Dzyaloshinsky-Moriya效应和d - p杂化机制来解释。这些机制在CuFe(1-x)Ga(x)O2的实验证据中得到了支持。极化中子衍射实验证明了铁电极化与自旋螺旋度S(i)×S(j)之间的一一对应关系。通过软X射线共振衍射实验观察到的具有2Q波矢的非公度轨道有序,证明了自旋-轨道相互作用将自旋和轨道有序相互联系起来,对CuFe(1-x)Ga(x)O2中铁电性的出现起着关键作用。