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A novel diversiform stochastic resonance of a domain wall and its performance at different states

机译:畴壁的新型多样随机共振及其在不同状态下的性能

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摘要

The response of an underdamped stochastic resonance (SR) with a new pining potential model of domain wall (DW) in ferromagnetic strips driven by additive Gaussian white noise to an additive weak harmonic forcing is investigated. We address that the new nonlinear system can be converted between bi-stable and mono-stable freely by tuning the system parameters. Analytical expressions of signal-to-noise ratio (SNR) of the bi-stable stage is obtained based on the linear response theory. In addition, another type of SR, which occurs when the system is mono-stable, is also reported with the intrinsic frequency derived analytically. The SR in mono-stable stage confirms to the typical physical resonance better with frequency-selection characteristic. Numerical simulation of both stages is carried out with outputs conforming to the theoretical derivation. Owing to the diversity of potential model, the new system possesses considerable merits for engineering applications.
机译:研究了由加性高斯白噪声驱动的铁磁条中畴壁(DW)的钉扎势模型对欠阻尼随机共振(SR)的响应对加性弱谐波强迫的响应。我们解决了通过调整系统参数可以在双稳态和单稳态之间自由转换新的非线性系统的问题。基于线性响应理论,获得了双稳态级的信噪比(SNR)的解析表达式。此外,还报告了另一种类型的SR,它是在系统为单稳态时发生的,其固有频率是通过解析得出的。具有频率选择特性的单稳态SR可以更好地确认典型的物理谐振。进行两个阶段的数值模拟,其输出符合理论推导。由于潜在模型的多样性,新系统在工程应用中具有相当大的优点。

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