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Dynamic phase transitions in the kinetic spin-1 Blume-Capel model on the Bethe lattice

机译:Bethe晶格上的自旋1 Blume-Capel动力学模型中的动态相变

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The stationary states of the kinetic spin-1 Blume-Capel (BC) model on the Bethe lattice are analyzed in detail in terms of recursion relations. The model is described using a Glauber-type stochastic dynamics in the presence of a time-dependent oscillating external magnetic field (h) and crystal field (D) interactions. The dynamic order parameter, the hysteresis loop area and the dynamic correlation are calculated. It is found that the magnetization oscillates around nonzero values at low temperatures (T) for the ferromagnetic (F) phase while it only oscillates around zero values at high temperatures for the paramagnetic (P) phase. There are regions of the phase space where the two solutions coexist. The dynamic phase diagrams are obtained on the (kT/J,h/J) and (kT/J,D/J) planes for the coordination number q=4. In addition to second-order and first-order phase transitions, dynamical tricritical points and triple points are also observed.
机译:根据递归关系,详细分析了Bethe晶格上的自旋1 Blume-Capel(BC)模型的稳态。在存在时间相关的振荡外部磁场(h)和晶体场(D)相互作用的情况下,使用Glauber型随机动力学描述了该模型。计算动态顺序参数,磁滞回线面积和动态相关性。已发现,对于铁磁(F)相,磁化强度在低温(T)处振荡为非零值,而对于顺磁(P)相,磁化强度仅在高温下振荡为零值左右。两种解决方案共存的相空间区域。在(kT / J,h / J)和(kT / J,D / J)平面上获得了动态相位图,且配位数为q = 4。除了二阶和一阶相变,还观察到了动态三临界点和三重点。

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