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Alternating superlattice textures in driven nanomagnets

机译:驱动纳米磁铁中的交替超晶格纹理

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Nanomagnets driven with uniform electric currents exhibit a wide variety of spatial textures. In the present work, we investigate alternating superlattice states in nanomagnets, which are spatially periodic textures composed by several spatial modes that oscillate in time. The magnetic system is described in the continuum approach by the Landau-Lifshitz-Gilbert-Slonczewski equation, and direct numerical simulations of this model allow us to characterize the alternating patterns. As a result of this temporal oscillation, textures alternate between different shapes. In particular, we focus on two types of textures, namely a superhexagon and a square-like pattern, which are composed by six and two dominant Fourier modes, respectively. Based on an appropriate modal decomposition, we reveal that the mechanism that originates the alternating superhexagon is a homoclinic bifurcation. In addition, we show that the oscillatory square-like texture emerges through a supercritical Andronov-Hopf bifurcation. (C) 2016 Elsevier B.V. All rights reserved.
机译:用均匀电流驱动的纳米磁铁表现出各种各样的空间纹理。在当前的工作中,我们研究了纳米磁体中的交替超晶格状态,这些超晶格状态是由几种随时间振荡的空间模式组成的空间周期性纹理。磁系统由Landau-Lifshitz-Gilbert-Slonczewski方程以连续方法描述,该模型的直接数值模拟使我们能够表征交替的模式。由于该时间振荡,纹理在不同形状之间交替。特别地,我们专注于两种类型的纹理,即超六边形和正方形图案,它们分别由六个和两个主要的傅立叶模式组成。基于适当的模态分解,我们揭示了产生交替的六边形的机理是同斜分叉。此外,我们表明,通过超临界Andronov-Hopf分叉出现了类似方形的振荡纹理。 (C)2016 Elsevier B.V.保留所有权利。

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