Venugopal Aneesh, Victora R H
Department of Electrical and Computer Engineering, University of Minnesota Twin Cities, Minneapolis, 55455, USA.
Sci Rep. 2021 May 31;11(1):11322. doi: 10.1038/s41598-021-90730-5.
Magnon-phase is an important entity in the parametric processes involving magnons, yet the general qualitative and quantitative consequences of the phase-noise on nonlinear properties remain far from understood. In the current simulation-based theoretical study, we explore the direct impact the phase-noise has on non-linearity. We use analytical techniques usually employed in the study of hydrodynamics to explain the magnon-based nonlinear phenomena. The behavior of the threshold-field and growth rate of the magnons in the presence of Gaussian phase-noise is analytically predicted. These predictions are verified by micromagnetic simulations. Such results are of crucial importance in the design and engineering of both traditional and futuristic devices.
磁振子相是涉及磁振子的参量过程中的一个重要实体,然而相位噪声对非线性特性的一般定性和定量影响仍远未被理解。在当前基于模拟的理论研究中,我们探讨了相位噪声对非线性的直接影响。我们使用通常用于流体动力学研究的分析技术来解释基于磁振子的非线性现象。通过分析预测了在存在高斯相位噪声的情况下磁振子的阈值场和增长率的行为。这些预测通过微磁模拟得到了验证。这样的结果在传统和未来设备的设计与工程中至关重要。