论文标题

在Skyrmion托管材料家族的实心解决方案中建立磁结构关系:GAV $ _4 $ S $ _ {8-Y} $ SE $ _ {y} $

Establishing magneto-structural relationships in the solid solutions of the skyrmion hosting family of materials: GaV$_4$S$_{8-y}$Se$_{y}$

论文作者

Štefančič, Aleš, Holt, Samuel J. R., Lees, Martin R., Ritter, Clemens, Gutmann, Matthias J., Lancaster, Tom, Balakrishnan, Geetha

论文摘要

GAV $ _4 $ s $ _ {8-Y} $ SE $ _y $ $(y = 0 $至$ 8)$材料家族已通过polycrystalline和单晶形式综合,及其结构和磁性及其结构和磁性。这些材料中的每一个都在$ f \ bar {4} 3M $空间群中在环境温度下结晶。 However, in contrast to the end members GaV$_4$S$_8$ and GaV$_4$Se$_8$, that undergo a structural transition to the $R3m$ space group at 42 and 41 K respectively, the solid solutions $(y = 1$ to $7)$ retain cubic symmetry down to 1.5 K. In zero applied field the end members of the family order ferromagnetically at 13 K (gav $ _4 $ s $ _8 $)和18 k(gav $ _4 $ se $ _8 $),而中级化合物表现出类似于旋转玻璃的地面状态。我们证明了GAV $ _4 $ S $ _8 $的磁性结构显示在V阳离子上的旋转定位,表明充电订购机制驱动结构相变。我们得出的结论是,在零场中该系列的最终成员的结构和铁磁转变的观察是稳定天空阶段的先决条件,并讨论如何通过其结构特性来解释$ y = 1 $至$ 7 $的$ y = 1 $至$ 7 $的材料。

The GaV$_4$S$_{8-y}$Se$_y$ $(y = 0$ to $8)$ family of materials have been synthesized in both polycrystalline and single crystal form, and their structural and magnetic properties thoroughly investigated. Each of these materials crystallizes in the $F\bar{4}3m$ space group at ambient temperature. However, in contrast to the end members GaV$_4$S$_8$ and GaV$_4$Se$_8$, that undergo a structural transition to the $R3m$ space group at 42 and 41 K respectively, the solid solutions $(y = 1$ to $7)$ retain cubic symmetry down to 1.5 K. In zero applied field the end members of the family order ferromagnetically at 13 K (GaV$_4$S$_8$) and 18 K (GaV$_4$Se$_8$), while the intermediate compounds exhibit a spin-glass-like ground state. We demonstrate that the magnetic structure of GaV$_4$S$_8$ shows localization of spins on the V cations, indicating that a charge ordering mechanism drives the structural phase transition. We conclude that the observation of both structural and ferromagnetic transitions in the end members of the series in zero field is a prerequisite for the stabilization of a skyrmion phase, and discuss how the absence of these transitions in the $y = 1$ to $7$ materials can be explained by their structural properties.

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