论文标题
磁场引起的FM-AFM元磁过渡和Mn $ _ {1/4} $ nbs $ _2 $在压力下
Magnetic-field-induced FM-AFM metamagnetic transition and strong negative magnetoresistance in Mn$_{1/4}$NbS$_2$ under pressure
论文作者
论文摘要
过渡金属二北元(TMDC)具有高化的化学稳定性,并且有可能在层之间融合各种磁性物种。通过3D元素插入的此类材料中传导电子的行为与它们的磁特性密切相关,并且可以通过外部磁场来敏感地控制。在这里,我们研究了NBS $ _2 $与Mn,Mn $ _ {1/4} $ nbs $ _2 $插入的Magnetotransport属性,表明了磁势和普通和异常的大厅抵抗力的复杂行为。将压力作为调谐参数的应用导致Mn $ _ {1/4} $ nbs $ _2 $的Magetotransport属性的急剧变化,表现出7.1 GPA时最高$ 65 \%$ $ 65 \%$。第一原理电子结构计算表明压力诱导的从铁磁到抗铁磁态的过渡。理论计算考虑了Mn $ _ {1/4} $ nbs $ _2 $的有限温度磁性特性,这表明野外诱导的metAmagnetic铁磁 - 抗磁力磁性转变是大型负元素的起源。这些结果启发了基于互载TMDC具有良好控制的元磁过渡的插入式TMDC材料的开发。
Transition metal dichalcogenides (TMDC) stand out with their high chemical stability and the possibility to incorporate a wide range of magnetic species between the layers. The behavior of conduction electrons in such materials intercalated by 3d-elements is closely related to their magnetic properties and can be sensitively controlled by external magnetic fields. Here, we study the magnetotransport properties of NbS$_2$ intercalated with Mn, Mn$_{1/4}$NbS$_2$, demonstrating a complex behavior of the magnetoresistance and of the ordinary and anomalous Hall resistivities. Application of pressure as tuning parameter leads to the drastic changes of the magnetotransport properties of Mn$_{1/4}$NbS$_2$ exhibiting large negative magnetoresistance up to $65 \%$ at 7.1 GPa. First-principles electronic structure calculations indicates pressure-induced transition from ferromagnetic to antiferromagnetic state. Theoretical calculations accounting for the finite temperature magnetic properties of Mn$_{1/4}$NbS$_2$ suggest a field-induced metamagnetic ferromagnetic-antiferromagnetic transition as an origin of the large negative magentoresistance. These results inspire the development of materials for spintronic applications based on intercalated TMDC with a well controllable metamagnetic transition.