论文标题
旋转厅振荡器中的尺寸跨界
Dimensional crossover in spin Hall oscillators
论文作者
论文摘要
先前已经在多个准零维(0D)铁磁系统(例如纳米磁体和纳米角色)中观察到了由直接自旋电流驱动的磁化的自动振荡。最近,显示出纯自旋霍尔电流可以激发准中二维(1D)铁磁纳米线的相干自动振荡动力学,但不能激发Quasi-Two-Two-Two-Two(2D)铁磁膜中的启发。在这里,我们研究了基于电线的pt/$ \ mathrm {ni} _ {80} \ mathrm {fe} _ {20} $ biLayer spin hall振荡器,通过变化线宽度。我们发现,增加电线宽度会导致激发自动振荡模式的数量增加,并伴随着每种模式的振幅和相干性的降低。我们还观察到随着电线宽度的增加,自动振荡的跨界也从硬发作到柔软的发作。随着温度的升高,自动振荡的幅度迅速降低,表明相位相位自动振荡模式与不连贯的热镁的相互作用在抑制自身振荡动力学方面起着重要作用。我们的测量值设定了单个自旋霍尔振荡器的尺寸的上限,并阐明了导致振荡器大小增加相干自动振荡的机制。
Auto-oscillations of magnetization driven by direct spin current have been previously observed in multiple quasi-zero-dimensional (0D) ferromagnetic systems such as nanomagnets and nanocontacts. Recently, it was shown that pure spin Hall current can excite coherent auto-oscillatory dynamics in quasi-one-dimensional (1D) ferromagnetic nanowires but not in quasi-two-dimensional (2D) ferromagnetic films. Here we study the 1D to 2D dimensional crossover of current-driven magnetization dynamics in wire-based Pt/$\mathrm{Ni}_{80}\mathrm{Fe}_{20}$ bilayer spin Hall oscillators via varying the wire width. We find that increasing the wire width results in an increase of the number of excited auto-oscillatory modes accompanied by a decrease of the amplitude and coherence of each mode. We also observe a crossover from a hard to a soft onset of the auto-oscillations with increasing the wire width. The amplitude of auto-oscillations rapidly decreases with increasing temperature suggesting that interactions of the phase-coherent auto-oscillatory modes with incoherent thermal magnons plays an important role in suppression of the auto-oscillatory dynamics. Our measurements set the upper limit on the dimensions of an individual spin Hall oscillator and elucidate the mechanisms leading to suppression of coherent auto-oscillations with increasing oscillator size.