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Blume-Capel ferromagnet driven by propagating and standing magnetic field wave: Dynamical modes and nonequilibrium phase transition

机译:传播和驻波驱动的Blume-Capel铁磁体:动力学模式和非平衡相变

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摘要

The dynamical responses of Blume-Capel (S=1) ferromagnet to the plane propagating (with fixed frequency and wavelength) and standing magnetic field waves are studied separately in two dimensions by extensive Monte Carlo simulation. Depending on the values of temperature, amplitude of the propagating magnetic field and the strength of anisotropy, two different dynamical phases are observed. For a fixed value of anisotropy and the amplitude of the propagating magnetic field, the system undergoes a dynamical phase transition from a driven spin wave propagating phase to a pinned or spin frozen state as the system is cooled down. The time averaged magnetisation over a full cycle of the propagating magnetic field plays the role of the dynamic order parameter. A comprehensive phase diagram is plotted in the plane formed by the amplitude of the propagating wave and the temperature of the system. It is found that the phase boundary shrinks inward as the anisotropy increases. The phase boundary, in the plane described by the strength of the anisotropy and temperature, is also drawn. This phase boundary was observed to shrink inward as the field amplitude increases.
机译:通过广泛的蒙特卡洛模拟,分别在二维中研究了Blume-Capel(S = 1)铁磁体对平面(具有固定频率和波长)的传播和驻磁场波的动力响应。根据温度值,传播磁场的振幅和各向异性的强度,观察到两个不同的动力相。对于固定的各向异性值和传播磁场的振幅,随着系统冷却,系统会经历从驱动自旋波传播相到钉扎或自旋冻结状态的动态相变。传播磁场整个周期的时间平均磁化强度起着动态阶跃参数的作用。在传播波的振幅和系统温度形成的平面上绘制了一个完整的相位图。发现随着各向异性的增加,相界向内收缩。在各向异性强度和温度所描述的平面中,还绘制了相边界。随着场振幅的增加,观察到该相界向内收缩。

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