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Dynamic magnetic properties of a hexagonal Ising nanowire system with higher-spin
Phase Transitions ( IF 1.3 ) Pub Date : 2020-03-01 , DOI: 10.1080/01411594.2020.1732976
Mustafa Keskin 1 , Mehmet Ertaş 1
Affiliation  

ABSTRACT Appling the framework of dynamic mean-field theory based on the Glauber-type stochastic dynamics, we study the dynamic magnetic hysteresis loop (DMHL) properties of the hexagonal nanowire system with spin-2 Ising particles. We investigate the DMHL behaviors for various values of reduced temperatures and interaction parameters. We also examine the reduced temperature and interaction parameters dependences of the coercive fields and remanent magnetizations. The obtained results are compared with some theoretical and experimental works and find a quantitatively good agreement with some theoretical and experimental works.

中文翻译:

具有更高自旋的六边形伊辛纳米线系统的动态磁特性

摘要 应用基于芒硝随机动力学的动态平均场理论框架,我们研究了具有自旋 2 Ising 粒子的六边形纳米线系统的动态磁滞回线 (DMHL) 特性。我们研究了各种降低温度和相互作用参数值的 DMHL 行为。我们还检查了矫顽场和剩磁的降低的温度和相互作用参数的依赖性。将所得结果与一些理论和实验工作进行比较,发现与一些理论和实验工作在数量上具有良好的一致性。
更新日期:2020-03-01
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