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Investigation of the Nonlinearity Thresholds of Magnetic Nanostructures by Computing the Bifurcation Points at Microwave Frequencies

机译:微波频率下分叉点计算磁纳米结构的非线性阈值研究

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The bifurcation analysis of the threshold for collective behavior, due to the instabilities (the parametric excitation) of magnetostatic waves (MSW) and dipole-exchange spin-waves (SW) in 3D magnetic nanostructures, is developed. The numerical method is applied to determine the bifurcation points of the nonlinear Maxwell operator (the nonlinear Maxwell equations with electrodynamic boundary conditions complemented by the Landau-Lifshitz equation including the exchange term). The original computational algorithm is improved by combining it with a qualitative method of analysis, based on Lyapunov stability theory. The threshold magnitudes of the pumping electromagnetic waves (EMWs) in the magnetic particle arrays are determined by computing the bifurcation point for different size nanoparticles and for various separations. This technique, based on the bifurcation theory, is a pioneering approach in nano-electrodynamics, taking into account the constrained geometries.
机译:开发了集体行为阈值的分岔分析,由于磁振荡波(MSW)和偶极交换旋转波(SW)在3D磁性纳米结构中的缺陷(参数激发)。应用数值方法来确定非线性麦克风操作者的分叉点(非线性麦克斯韦方程,具有电动边界条件的Landau-Lifshitz方程包括交换项)。基于Lyapunov稳定性理论,通过将其与定性分析方法组合来改进原始计算算法。通过计算不同尺寸纳米颗粒的分叉点和各种分离来确定磁性粒子阵列中的泵送电磁波(EMWS)的阈值幅度。基于分叉理论的这种技术是纳米电动动力学中的开拓方法,考虑到受约束的几何形状。

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