论文标题
Mn $ _3 $ nin薄膜中的异常nernst效果
Anomalous Nernst effect in Mn$_3$NiN thin films
论文作者
论文摘要
在磁化消失的磁性材料中,观察到相当大的霍尔效应已开始对这种现象的理解和工程兴趣。抗磁磁性反植物是新兴的材料类别之一,由于复杂的电子带结构和磁有序,具有各种有趣的特性。然而,关于异常的Nernst效果及其在这类材料中其大小的报告非常有限。这种稀缺性可能部分是由于可靠地量化异常Nernst系数的实验难度。在这里,我们报告了针对反铁磁抗磷灰石Mn $ _3 $ nin薄膜的异常Nernst效应的实验。使用相同样品和测量几何形状对异常霍尔和Nernst效应的测量都可以直接比较这两种效果并量化Mn $ _3 $ nin中异常的Nernst系数和电导率。我们仔细评估样品中热梯度的空间分布,并使用有限元建模来证实我们的实验结果。
The observation of a sizable anomalous Hall effect in magnetic materials with vanishing magnetization has renewed interest in understanding and engineering this phenomenon. Antiferromagnetic antiperovskites are one of emerging material classes that exhibit a variety of interesting properties owing to a complex electronic band structure and magnetic ordering. Reports on the anomalous Nernst effect and its magnitude in this class of materials are, however, very limited. This scarcity may be partly due to the experimental difficulty of reliably quantifying the anomalous Nernst coefficient. Here, we report experiments on the anomalous Nernst effect in antiferromagnetic antiperovskite Mn$_3$NiN thin films. Measurement of both the anomalous Hall and Nernst effects using the same sample and measurement geometry makes it possible to directly compare these two effects and quantify the anomalous Nernst coefficient and conductivity in Mn$_3$NiN. We carefully evaluate the spatial distribution of the thermal gradient in the sample and use finite element modeling to corroborate our experimental results.