论文标题

磁性订单和磁通磁管在半金属铁磁Mn $ _y $ ru $ _x $ ga薄膜中

Magnetic order and magneto-transport in half-metallic ferrimagnetic Mn$_y$Ru$_x$Ga thin films

论文作者

Siewierska, K. E., Atcheson, G., Jha, A., Esien, K., Smith, R., Lenne, S., Teichert, N., O'Brien, J., Coey, J. M. D., Stamenov, P., Rode, K.

论文摘要

半金属Mn $ _2 $ ru $ _x $ ga薄膜的弦芬含量,具有双轴构成的逆助力器结构,控制了决定其磁性和电子特性的铁磁性。对MGO(100)基质上的Mn $ _y $ ru $ ru $ ru $ ru $ ru $ ru $ ru $ ru $ ru $ _x $ ga的广泛研究,其$ 1.8 \ leq y \ leq y \ leq 2.6 $和$ x = 0.5 $,0.7或0.9,包括晶体学,磁性,磁性订单,magneto-transport和自旋极化和自旋极化,以绘制特定于特定组件的依赖性依赖于这种依赖于该多功能系统的属性ternary ternary ternary ternary ternary ternary。从X射线反射率获得的实验密度与计算密度的比较表明,所有组合物的全部位置占用率意味着化学障碍。所有瞬间都位于带有坡度1的Slater-pauling图上,除$ x = 0.5 $,$ y = 2.2 $以低于500〜k的价格显示磁补偿。接近\ tcmp〜的强制性超过10〜t。增加Mn或RU含量会增加\ TCMP,但增加RU也会降低通过点接触Andreev反射确定的自旋极化。分子场理论用于模拟净铁磁矩的温度依赖性,并推导三个主要交换系数。 Marked differences in the shape of anomalous Hall and net magnetisation hysteresis loops are explained by substantial canting of the small net moment by up to \SI{40}{\degree} relative to the $c$-axis in zero field, which is a result of slight non-collinearity of the Mn$^{4c}$ sublattice moments due to competing intra-sublattice exchange interactions arising from抗铁矿疾病和单位电池中的过量MN。后果是减少自旋极化,并增强对异常效果的内在贡献。对物理特性的系统调查是$ x $和$ y $的函数,将指导选择构图,以满足基于宏伟的MRG设备的要求。

The ruthenium content of half-metallic Mn$_2$Ru$_x$Ga thin films, with a biaxially-strained inverse Heusler structure, controls the ferrimagnetism that determines their magnetic and electronic properties. An extensive study of Mn$_y$Ru$_x$Ga films on MgO (100) substrates with $1.8 \leq y \leq 2.6$ and $x = 0.5$, 0.7 or 0.9, including crystallographic, magnetic order, magneto-transport and spin polarisation is undertaken to map specific composition-dependent properties in this versatile ternary system. A comparison of experimental densities obtained from X-ray reflectivity with calculated densities indicates full site occupancy for all compositions, which implies chemical disorder. All moments lie on the Slater-Pauling plot with slope 1 and all except $x = 0.5$, $y = 2.2$ exhibit magnetic compensation at \tcmp~below 500~K. The coercivity near \tcmp~exceeds 10~T. Increasing the Mn or Ru content raises \tcmp, but increasing Ru also decreases the spin polarisation determined by point contact Andreev reflection. Molecular field theory is used to model the temperature dependence of the net ferrimagnetic moment and three principal exchange coefficients are deduced. Marked differences in the shape of anomalous Hall and net magnetisation hysteresis loops are explained by substantial canting of the small net moment by up to \SI{40}{\degree} relative to the $c$-axis in zero field, which is a result of slight non-collinearity of the Mn$^{4c}$ sublattice moments due to competing intra-sublattice exchange interactions arising from antisite disorder and excess Mn in the unit cell. Consequences are reduced spin polarisation and an enhanced intrinsic contribution to the anomalous Hall effect. The systematic investigation of the physical properties as a function of $x$ and $y$ will guide the selection of compositions to meet the requirements for magnonic and spintronic MRG-based devices.

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