首页> 外文期刊>Physical Review, B. Condensed Matter >Second-order spin-reorientation transition via magnetoelastic coupling in CoxPd1-x alloy films - art. no. 094410
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Second-order spin-reorientation transition via magnetoelastic coupling in CoxPd1-x alloy films - art. no. 094410

机译:CoxPd1-x合金薄膜中通过磁弹性耦合的二阶自旋重取向转变-art。没有。 094410

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摘要

We report an observation of smooth spin-reorientation transitions from in-plane to normal-to-plane direction with increasing Pd overlayer thickness in CoxPd1-x alloy films, showing characteristics of a second-order transition (SOT). The magnetoelastic coupling term Gamma plays a crucial role in such behavior via its contribution to the fourth- as well as second-order anisotropy constants. The nature of the SOT is characterized by -Gamma(4)/Gamma(2)=0.12-0.47 determined for x=0.25-0.40 in conjunction with lattice-misfit strains. The controlling spin orientation or anisotropy axis via magnetoelastic coupling without applying a magnetic field may be applicable to miniatured memory and sensor devices. [References: 30]
机译:我们报告观察到随着CoxPd1-x合金膜中Pd覆盖层厚度的增加,从平面内到法线至平面方向的自旋重定向方向过渡平滑,显示出二级过渡(SOT)的特征。磁弹性耦合项Gamma通过对四阶和二阶各向异性常数的贡献在这种行为中起着至关重要的作用。 SOT的性质以-Gamma(4)/ Gamma(2)= 0.12-0.47为特征,其中x = 0.25-0.40与晶格失配应变一起确定。在不施加磁场的情况下经由磁弹性耦合来控制自旋取向或各向异性轴可适用于小型化的存储器和传感器装置。 [参考:30]

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