论文标题
张-LI扭矩对自旋扭矩纳米振荡器的影响
Effects of the Zhang-Li Torque on Spin Torque nano Oscillators
论文作者
论文摘要
自旋变速器纳米振荡器(STNO)是基于具有非线性响应的磁共振与振荡振幅的磁共振响应器,这为它们提供了较大的频率可调性,包括相互同步的可能性。 STNO中的磁化动力学是由自旋电流的自旋转移扭矩(STT)诱导的,并且可以通过由于巨大的磁力耐药性或隧穿磁磁性而引起的电阻变化来检测。 STT效应通常被视为类似阻尼的术语,可减少磁耗散并促进磁模式的激发。但是,一个称为Zhang-Li项的额外术语对磁化梯度(例如域壁)具有影响,并且可能对STNO中的局部磁模式产生影响。在这里,我们研究了Zhang-li扭矩在用纳米接触几何形状在STNO中产生的磁激发中的影响。使用微磁模拟,我们发现Zhang-Li扭矩改变了磁模式的阈值及其有效尺寸的阈值电流。此外,我们表明可以通过改变纳米接触尺寸和层厚度之间的比率来控制效果。
Spin-torque nano-oscillators (STNO) are microwave auto-oscillators based on magnetic resonances having a nonlinear response with the oscillating amplitude, which provides them with a large frequency tunability including the possibility of mutual synchronization. The magnetization dynamics in STNO are induced by spin transfer torque (STT) from spin currents and can be detected by changes in electrical resistance due to giant magnetoresistance or tunneling magnetoresistance. The STT effect is usually treated as a damping-like term that reduces magnetic dissipation and promotes excitation of magnetic modes. However, an additional term, known as Zhang-Li term has an effect on magnetization gradients such as domain walls, and could have an effect on localized magnetic modes in STNO. Here we study the effect of Zhang-Li torques in magnetic excitations produced in STNO with a nanocontact geometry. Using micromagnetic simulations we find that Zhang-Li torque modify threshold currents of magnetic modes and their effective sizes. Additionally we show that effects can be controlled by changing the ratio between nanocontact size and layer thickness.