首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Dynamic calculations of the core/shell structured Ising-type endohedral fullerenes: The effect of core and core/shell interaction
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Dynamic calculations of the core/shell structured Ising-type endohedral fullerenes: The effect of core and core/shell interaction

机译:核心/壳结构型胚轴富勒烯的动态计算:核心和核心/壳互动的效果

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摘要

In this study, we examine by comparing the dynamic magnetic and hysteretic properties of Ising-type endohedral fullerene (EF) with various dopant magnetic particles confined within a spherical cage. The model of EF X@C60(Spin-1/2) with X = spin-1/2, spin-1 and spin-3/2 is proposed to study the effect of the nature of core particle on the magnetic properties. The results were obtained by mean-field theory as well as Glauber-type stochastic dynamics, and focused on the response of thermal and hysteretic behaviors of systems. The system exhibits second- and first-order phase transitions. In three different core cases, the system also exhibits type-II superconductivity behavior with a dynamic hysteresis curves of the core. All results display magnetic properties of the EF which strongly depend on the nature of core particle. Moreover, core particle and core/shell (C-S) interaction are proposed as the basic factors affecting the magnetic properties of EF system.
机译:在该研究中,通过将ising型Endohental富勒烯(EF)的动态磁性和滞后性能与各种掺杂剂磁性颗粒进行比较来检查,这些磁性颗粒被限制在球形笼内。 提出了具有X = Spin-1/2,Spin-1和Spin-3/2的EF X @ C60(Spin-1/2)的模型,以研究核心粒子本质对磁性的影响。 结果是通过平均场理论和胶鞋型随机动力学获得的,并专注于系统的热和歇斯斯特内行为的响应。 该系统展示了第二阶和一阶相转变。 在三种不同的核心情况下,该系统还表现出II型超导行为,具有核心的动态滞后曲线。 所有结果显示EF的磁性,强烈取决于核心粒子的性质。 此外,提出了核心颗粒和核心/壳(C-S)相互作用作为影响EF系统磁性的基本因素。

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