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Bifurcations in the Dynamical System for Three-Layered Magnetic Valve

机译:三层磁阀动力系统中的分叉

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Magnetization dynamics in a three-layered nanopillar Co/Cu/Co structure with one fixed and one free layer driven by external magnetic field and spin-polarized electric current was investigated using methods of the theory of bifurcations. Mathematical model is based on the Landau-Lifshits-Gilbert equation with the current term in the Slonczewski–Berger form. Orientation of applied magnetic field was considered to be parallel to the anisotropy axis. Physical model included the magnetocrystalline anisotropy field and the demagnetizing field. Because of small size of the structure, the space dependence of magnetization, as usually, was not taken into account. The resulting system of equations has the form of the nonlinear dynamical system with the polynomial right sides. Mathematical simulation of magnetization dynamics for several typical values of field and current was performed. The numerical experiments revealed the features of switching process in more detail and permitted to find new regimes of magnetization dynamics, such as incomplete and accidental switching.
机译:使用分岔理论的方法中的三层纳米柱的Co /铜/钴结构与一个固定的和一个自由层由外部磁场及自旋极化电流驱动磁化动力学进行了研究。数学模型是基于朗道 - Lifshits - 吉尔伯特方程在Slonczewski伯杰形式在本届任期。施加的磁场的方向被认为是平行于各向异性轴。物理模型包括磁晶各向异性场和退磁场。由于结构,磁化的空间依赖性,作为通常的小尺寸的,并没有考虑到。将得到的方程系统具有与多项式右侧的非线性动态系统的形式。进行磁化动力学场和电流的几种典型值的数学模拟。数值实验揭示的更详细的切换处理的功能和允许发现磁化动力学,如不完全和意外切换的新机制。

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