论文标题
相互作用的单域超磁性纳米颗粒相互作用的热力学,该纳米颗粒在常规立方晶格的节点中冻结
Thermodynamics of interacting single-domain superparamagnetic nanoparticles frozen in the nodes of a regular cubic lattice
论文作者
论文摘要
在这项工作中,我们研究了偶极 - 偶极间粒子间相互作用对固定单分散超paragnetic纳米颗粒的静态热力学和磁性特性的影响。我们假设磁性纳米颗粒嵌入了常规立方晶格的节点中,以便关闭粒子平移程度。纳米颗粒的磁矩松弛是由Neel机制发生的。易于轴对齐(i)平行或(ii)垂直于外部场的方向。使用理论和计算机模拟研究了这些模型,并明确考虑了微观离散结构。 Helmholtz自由能,静态磁化和初始磁敏感性的分析表达式是针对配置(I)和(ii)作为磁性晶体学各向异性能量屏障的功能的分析表达式,该函数均可测量参数$σ$,以及通过$ $ $ $ limeced $σ的强度和二波尔 - 二波尔 - 二波尔 - 二波尔 - 二极管相互作用的强度。该理论与MC模拟的结果之间的良好一致性在低和中等值的$λ_e$和$σ$的区域之间达成了良好的一致性。对于$λ_e$和$σ$的高值,从MC模拟中找到了定期定向结构中磁矩的结构(i)。
In this work, we study the effect of dipole-dipole interparticle interactions on the static thermodynamic and magnetic properties of an ensemble of immobilized monodisperse superparamagnetic nanoparticles. We assume that magnetic nanoparticles are embedded in the nodes of a regular cubic lattice, so that the particle translational degrees of freedom are turned off. The relaxation of the magnetic moments of the nanoparticles occurs by the Neel mechanism. The easy axes are aligned (i) parallel or (ii) perpendicular to the direction of an external field. These models are investigated using theory and computer simulation, taking microscopic discrete structure explicitly into account. The analytical expressions of the Helmholtz free energy, the static magnetization, and the initial magnetic susceptibility are derived for both configurations (i) and (ii) as functions of the height of the magnetic crystallographic anisotropy energy barrier, measured by parameter $σ$, and the intensity of the dipole-dipole interparticle interactions measured by $λ_e$. A good agreement between the theory and the results of MC simulations in the region of low and moderate values of $λ_e$ and $σ$ is obtained. For high values of $λ_e$ and $σ$, the structuring of magnetic moments in regularly orientated structures was found from MC simulations for configuration (i).