论文标题
单轴性手性磁铁中的倾斜反铁磁订单V $ _ {1/3} $ tas $ _2 $和V $ _ {1/3} $ nbs $ _ {2} $
Canted antiferromagnetic order in the monoaxial chiral magnets V$_{1/3}$TaS$_2$ and V$_{1/3}$NbS$_{2}$
论文作者
论文摘要
dzyaloshinskii-moriya(DM)的相互作用存在于过渡金属二色代基化金(TMDC)磁铁中的形式$ m_ {1/3} t $ s $ _ {2} $($ m $ $ = $ 3D过渡金属,$ t $ t $ t $ { $ \ sqrt {3} \ times \ sqrt {3} $ superlattices在父材材料的结构中$ t $ s $ _2 $并打破中心对称性。在这些系统中,DM和铁磁交换之间的竞争已被证明可以稳定拓扑缺陷,被称为手性孤子的拓扑缺陷,在某些互化的TMDC中,从基本物理学和技术应用的潜力方面引起了兴趣。在当前文章中,我们使用X射线粉末衍射,磁化和单晶中子衍射的组合,报告了对材料的研究V $ _ {1/3} $ tas $ _2 $和V $ _ {1/3} $ nbs $ _2 $。从历史上看,我们的衍射结果被认为是铁磁体,而是表明这些化合物中的钒旋转在低温下排列成A型抗铁磁构型。精制矩为1.37(6)$μ_{b} $和1.50(9)$μ_{b} $,分别为V $ _ {1/3} $ tas $ _2 $和V $ _ {1/3} $ nbs $ _2 $。过渡温度$ t_ {c} $〜$ = $〜$〜$〜$〜$ _ {1/3} $ tas $ _ {2} $,V $ _ {1/3} $ _ {1/3} $ nbs $ _ {2} $从磁化和中子差异结果获得。我们将在低温阶段观察到的小净磁化归因于一个微妙的($ \ sim $ 2 $^{\ circ} $)在平面外方向上倾斜了Xy-Spins。这些新结果表明在相邻的AB-planes中,钒力矩之间存在主要的抗铁磁交换相互作用,可能会消除当前材料中识别稳定的手性孤子的可能性。
The Dzyaloshinskii-Moriya (DM) interaction is present in the transition metal dichalcogenides (TMDC) magnets of form $M_{1/3}T$S$_{2}$ ($M$ $=$ 3d transition metal, $T$ $\in$ {Nb, Ta}), given that the intercalants $M$ form $\sqrt{3}\times\sqrt{3}$ superlattices within the structure of the parent materials $T$S$_2$ and break the centrosymmetry. Competition between the DM and ferromagnetic exchange interactions in these systems has been shown to stabilize a topological defect known as a chiral soliton in select intercalated TMDCs, initiating interest both in terms of fundamental physics and the potential for technological applications. In the current article, we report on our study of the materials V$_{1/3}$TaS$_2$ and V$_{1/3}$NbS$_2$, using a combination of x-ray powder diffraction, magnetization and single crystal neutron diffraction. Historically identified as ferromagnets, our diffraction results instead reveal that vanadium spins in these compounds are arranged into an A-type antiferromagnetic configuration at low temperatures. Refined moments are 1.37(6)$μ_{B}$ and 1.50(9)$μ_{B}$ for V$_{1/3}$TaS$_2$ and V$_{1/3}$NbS$_2$, respectively. Transition temperatures $T_{c}$~$=$~32K for V$_{1/3}$TaS$_{2}$ and 50K for V$_{1/3}$NbS$_{2}$ are obtained from the magnetization and neutron diffraction results. We attribute the small net magnetization observed in the low-temperature phases to a subtle ($\sim$2$^{\circ}$) canting of XY-spins in the out-of-plane direction. These new results are indicative of dominant antiferromagnetic exchange interactions between the vanadium moments in adjacent ab-planes, likely eliminating the possibility of identifying stable chiral solitons in the current materials.