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Dynamic magnetic hysteresis loop features of molecular-based magnetic materials and ferrimagnetic systems by the path probability method

机译:路径概率法测定基于分子磁性材料和亚铁磁性系统的动态磁滞回路特征

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摘要

Dynamic magnetic hysteresis loops (DMHL) features of molecular-based magnetic materials and ferrimagnetic systems are investigated by a mixed spin (1/2, 1) model by means of the path probability method (PPM). The PPM contains two rate constants; hence the DMHL features have been studied by using the method with two rate constants. In particular, the effects of the repulsive (J < 0) and attractive (J > 0) bilinear nearest-neighbor pair interactions, temperature CO, crystal-field interaction (D), angular frequency (ω) of the oscillating magnetic field and especially the rate constant (k_2), which corresponds to the wheel speed in the melt spinning technique (MST), on the DMHL are investigated. The shapes and areas of hysteresis loops are affective sensibility by these system parameters. We also investigate the magnetic coercive fields and remanents magnetizations as a function oo. We found that the most of our results are in a good agreement with some theoretical and experimental reported works. We also observe the novel and interesting DMHL behaviors for lower values of T, and higher values of ω, k_2 and D.
机译:通过路径概率法(PPM)通过混合旋转(1/2,1)模型研究了基于分子基磁性材料和亚铁磁性系统的动态磁磁滞环(DMHL)特征。 PPM包含两个速率常数;因此,通过使用具有两个速率常数的方法研究了DMHL特征。特别地,排斥(J <0)和有吸引力(J> 0)BILINEAR最近相邻对交互,温度CO,晶体场相互作用(D),振荡磁场的角频率(ω)的效果,尤其是研究了DMHL上熔融纺丝技术(MST)中的车轮速度的速率常数(K_2)。这些系统参数的滞后环的形状和区域是情感敏感性。我们还调查磁矫顽字段并将磁化作为函数OO。我们发现,我们的大多数结果与一些理论和实验报告的作品一致。我们还观察到较低值的新颖和有趣的DMHL行为,ω,k_2和d的较高值。

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