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Nonlinear frequency-dependent effects in the dc magnetization of uniaxial magnetic nanoparticles in superimposed strong alternating current and direct current fields

机译:叠加强交流电和直流电场中单轴磁性纳米粒子直流磁化的非线性频率相关效应

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摘要

The dc component of the magnetization of noninteracting fine magnetic particles possessing simple uniaxial anisotropy and subjected to strong ac and dc bias magnetic fields is calculated via the magnetic Langevin equation. In the presence of an ac driving field, the dc component of the magnetization of uniaxial particles alters drastically leading to new nonlinear effects; in particular, it becomes frequency-dependent. In axial symmetry, where the strong ac field is parallel to the easy axis of a particle, two distinct dispersion regions in the dc magnetization at low and mid-frequencies emerge, corresponding to longitudinal overbarrier and intrawell relaxation modes. Such frequency-dependent behavior allows one to estimate the magnetization reversal time via the half-width of the low-frequency dispersion band. Otherwise, by applying the strong ac field at an angle to the easy axis of a particle so breaking the axial symmetry, a third high-frequency nonlinear resonant dispersion in the dc component of the magnetization appears accompanied by parametric resonance behavior due to excitation of transverse modes with frequencies close to the precession frequency.
机译:通过磁性朗格文方程计算具有简单单轴各向异性并经受强交流和直流偏置磁场的非相互作用细磁性颗粒磁化的直流分量。在存在交流驱动场的情况下,单轴粒子磁化的直流分量发生巨大变化,从而导致新的非线性效应。特别地,它变得取决于频率。在轴向对称中,强交流场平行于粒子的易轴,在低频和中频的直流磁化中出现两个不同的色散区域,对应于纵向过势垒和阱内弛豫模式。这种依赖于频率的行为使人们可以通过低频色散带的一半宽度来估计磁化反转时间。否则,通过以与粒子的易轴成一定角度的角度施加强ac场,从而破坏轴向对称性,磁化dc分量中的第三次高频非线性共振弥散会出现,这是由于横向激励引起的频率接近进动频率的模式。

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