Max Planck Institute for Chemical Physics of Solids, Nöthnitzer Straße 40, D-01187 Dresden, Germany.
J Phys Condens Matter. 2014 Jan 29;26(4):046002. doi: 10.1088/0953-8984/26/4/046002. Epub 2013 Dec 20.
In divalent Eu systems, the 4f local moment has a pure spin state J = S = 7/2. Although the absence of orbital moment precludes crystal electric field effects, we report a sizable magnetic anisotropy in single crystals of EuRh2Si2. We observed a surprisingly complex magnetic behavior with three successive phase transitions. The Eu(2+) moments order in a probably amplitude-modulated structure below 24.5 K, undergoing a further transition to a structure that is possibly of the equal-moment type, and a first order transition at lower temperatures, presumably into a spin spiral structure. The sharp metamagnetic transition observed at low fields applied perpendicular to the hard axis is consistent with a change from a spiral to a fan structure. These magnetic structures are presumably formed by ferromagnetic planes perpendicular to the c axis, stacked antiferromagnetically along c but not of type I, at least just below the ordering temperature. Since EuRh2Si2 is isoelectronic and isostructural to EuFe2As2 at room temperature, our results are also relevant for the complex Eu-magnetism observed there, especially for the transition from an antiferromagnetic to a ferromagnetic state observed in EuFe2P2 upon substituting As by P.
在二价 Eu 体系中,4f 局域磁矩具有纯自旋态 J = S = 7/2。尽管没有轨道磁矩,但是我们在 EuRh2Si2 单晶中报告了相当大的磁各向异性。我们观察到具有三个连续相变的惊人复杂的磁行为。Eu(2+) 磁矩在可能的幅度调制结构中低于 24.5 K 有序,经历进一步的转变为可能是等磁矩类型的结构,以及低温下的一级相变,可能进入螺旋磁结构。在垂直于硬轴施加的低场下观察到的急剧顺磁转变与从螺旋结构到扇形结构的变化一致。这些磁结构可能由垂直于 c 轴的铁磁平面形成,沿 c 轴反铁磁堆叠,但不是 I 型,至少在低于有序温度时是这样。由于 EuRh2Si2 与室温下的 EuFe2As2 等电子和等结构,我们的结果对于在那里观察到的复杂 Eu 磁体也很重要,特别是对于在 EuFe2P2 中用 P 取代 As 时观察到的从反铁磁到铁磁状态的转变。