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Micromagnetic modeling of terahertz oscillations in an antiferromagnetic material driven by the spin Hall effect

机译:旋转霍尔效应驱动的防铁磁材料中太赫兹振动的微观建模

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摘要

The realization of terahertz (THz) sources is a fundamental aspect for a wide range of applications. Over different approaches, compact THz oscillators can be realized, taking advantage of dynamics in antiferromagnetic thin films driven by the spin Hall effect. Here we perform a systematic study of these THz oscillators within a full micromagnetic solver based on the numerical solution of two coupled Landau-Lifshitz-Gilbert-Slonczewski equations, considering ultrathin films. We find two different dynamical modes depending on the strength of the Dzyaloshinskii-Moriya interaction (DMI). At low DMI, a large-amplitude precession is excited, where both the magnetizations of the sublattices are in a uniform state and rotate in the same direction. At large enough DMI, the ground state of the antiferromagnet becomes nonuniform and the antiferromagnetic dynamics is characterized by ultrafast domain-wall motion.
机译:Terahertz(THz)来源的实现是广泛应用的基本方面。通过不同的方法,可以实现紧凑的THz振荡器,利用由旋转霍尔效应驱动的反铁磁薄膜中的动态。在这里,我们基于两个耦合Landau-Lifshitz-Gilont-Sloncski方程的数值解决方案的全微磁性求解器在整个微磁求解器内进行系统研究。根据Dzyaloshinskii-Moriya相互作用(DMI)的强度,我们发现两种不同的动态模式。在低DMI下,激发大幅度的进料,其中,子插块的磁化在均匀的状态下并沿相同方向旋转。在足够大的DMI下,反霉素变得不均匀的地位,并且防铁磁动力学的特征在于超快域壁运动。

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