Investigation of the Magnetic Features of the Fullerene-Dimer-Like Nanostructure (C60)2: A Monte Carlo Study

D. Kabouchi, Z. Fadil, R. El Fdil, C. Raorane, B. Kabouchi, A. Mhirech, E. Salmani, S. Kim, A. M. Tighezza, P. Rosesaih
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Abstract

The current investigation employs Monte Carlo simulations to explore the magnetic features of a Fullerene-dimer-like nanostructure (C60)2 characterized by the spin σ-1. It explores how the coupling interaction Jσ, the biquadratic parameter K, the external magnetic H and the crystal D fields influence the thermal and magnetic features of the nanostructure, particularly the blocking temperature (TB). The results also highlight the dependence of hysteresis cycles and the coercive magnetic field Hc on the values of Jσ, K, and D, with significant variations at lower temperatures. The findings indicate the distinctive magnetic behavior of the Fullerene-dimer-like nanostructure (C60)2 potentially useful in various technological applications.
富勒烯-二聚体类纳米结构 (C60)2 的磁性特征研究:蒙特卡罗研究
目前的研究采用蒙特卡罗模拟来探索以自旋σ-1 为特征的富勒烯二聚体类纳米结构 (C60)2 的磁性特征。它探讨了耦合相互作用 Jσ、双二次参数 K、外磁 H 和晶体 D 场如何影响纳米结构的热特性和磁特性,尤其是阻塞温度 (TB)。研究结果还强调了磁滞周期和矫顽力磁场 Hc 对 Jσ、K 和 D 值的依赖性,在较低温度下变化显著。研究结果表明,富勒烯二聚体类纳米结构 (C60)2 具有独特的磁性行为,可用于各种技术应用。
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