论文标题
调整Crmnfeconi Cantor合金的磁性特性
Tuning the Magnetic Properties of the CrMnFeCoNi Cantor Alloy
论文作者
论文摘要
在5 K至300 K的温度范围内研究了20多个Cantor合金样品的磁性特性,并在使用磁力测定法和Muon自旋松弛的场中研究了高达70 KOE的磁性。确定了两个跃迁:一个类似旋转的玻璃样过渡,根据成分的不同,在55 K和190 K之间出现,而在多个具有较大组成的样品中,在大约43 K处发生的铁磁过渡。 43 K处的磁特征对化学成分非常不敏感。使用改良的居里 - 韦斯模型来拟合易感性数据并为每个样品提取净有效磁矩。随着CR或MN浓度的增加,净生效力矩的结果值可以减小,或者随着Fe,CO或Ni浓度的降低而增强。除了足够大的生效力矩之外,磁场状态从铁磁性转变为铁磁性。有效的磁矩与相应的组合物一起在全局线性回归分析中使用,以提取元素特异性磁矩,这与基于Ab-Initio的密度功能理论(DFT)计算的值进行了比较。这些矩提供了必要的信息,以控制Cantor合金变体的磁性特性。
Magnetic properties of more than twenty Cantor alloy samples of varying composition were investigated over a temperature range of 5 K to 300 K and in fields of up to 70 kOe using magnetometry and muon spin relaxation. Two transitions are identified: a spin-glass-like transition that appears between 55 K and 190 K depending on composition, and a ferrimagnetic transition that occurs at approximately 43 K in multiple samples with widely varying compositions. The magnetic signatures at 43 K are remarkably insensitive to chemical composition. A modified Curie-Weiss model was used to fit the susceptibility data and to extract the net effective magnetic moment for each sample. The resulting values for the net effective moment were either diminished with increasing Cr or Mn concentrations or enhanced with decreasing Fe, Co, or Ni concentrations. Beyond a sufficiently large effective moment, the magnetic ground state transitions from ferrimagnetism to ferromagnetism. The effective magnetic moments, together with the corresponding compositions, are used in a global linear regression analysis to extract element-specific effective magnetic moments, which are compared to the values obtained by ab-initio based density functional theory (DFT) calculations. These moments provide the information necessary to controllably tune the magnetic properties of Cantor alloy variants.