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Micromagnetic Simulation for Spin-Transfer Switching With a Tilted Spin Polarizer

机译:倾斜自旋偏振器自旋转移开关的微磁仿真

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This paper reports the micromagnetic simulations of spin-wave modes excited by spin-transfer torque for an elliptical nanomagnet sized $178times 133times 2.1 {rm nm}^{3}$ . Through power spectral analysis we discovered that, for the collinear case, the excited spin-wave mode exhibits the same spatial symmetry as the initial ground state. The additional action of the Oersted field not only changes the mode pattern but also shifts the eigenfrequency from 8.24 GHz to 2.99 GHz due to the degradation of symmetry. For the non-collinear case, without taking into account the Oersted field, a tilted polarizer leads to the excitation of the quasi-uniform mode and reduces the switching time substantially. However, considering the Oersted field, the activated mode is the center mode. The simulated results indicate that the spatial symmetry of the Oersted field and the spin-torque term play crucial roles in determining the activated spin-wave eigenmodes.
机译:本文报道了一个椭圆形纳米磁体的自旋传递转矩所激发的自旋波模式的微磁模拟,其尺寸为178×133×2.1 {rm nm} ^ {3} $。通过功率谱分析,我们发现在共线情况下,激发自旋波模式表现出与初始基态相同的空间对称性。由于对称性的降低,奥斯特场的附加作用不仅改变了模式模式,而且使本征频率从8.24 GHz转移到2.99 GHz。对于非共线情况,在不考虑奥斯特场的情况下,倾斜的偏振器会导致准均匀模式的激发,并显着减少切换时间。但是,考虑到Oersted字段,激活模式为中心模式。仿真结果表明,Oersted场的空间对称性和自旋转矩项在确定激活的自旋波本征模中起着至关重要的作用。

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