论文标题
简单的Ferroparpicticles晶格中的颗粒间相关性:理论和计算机模拟
Interparticle Correlations in the Simple Cubic Lattice of Ferroparticles: Theory and Computer Simulations
论文作者
论文摘要
使用理论和计算机模拟研究了单域铁胶颗粒(SCLF)的简单立方晶格(SCLF)中各向异性粒子间相关性。该理论基于Helmholtz自由能扩张,例如经典病毒系列,直至第二个病毒系数。 Helmholtz自由能的分析公式以对数形式合并,以最大程度地减少串联截断的影响。新的理论方法,包括对晶格节点坐标的离散求和,对偶性硬球体流体的Helmholtz自由能的经典病毒膨胀进行了认真的比较;讨论了SCLF和偶极硬球体流体的Helmholtz自由能之间的主要差异。 Helmholtz自由能,磁化强度和SCLF的初始磁敏感性的理论结果与分子动态模拟数据进行了比较。在所有情况下,都认为使用对数形式的helmholtz自由能的对数形式进行理论预测是优越的,但是它们仅具有有效偶极耦合常数$λ_e<1.5 $的适用性范围。对于$λ_e$的最高值,在分子动态模拟中观察到SCLF中磁偶极子的结构过渡。已经表明,对于$λ_e\ gtrsim 2 $,系统中会出现抗磁性顺序。
Anisotropic interparticle correlations in the simple cubic lattice of single-domain ferroparticles (SCLF) are studied using both theory and computer simulation. The theory is based on the Helmholtz free energy expansion like classical virial series up to the second virial coefficient. The analytical formula for the Helmholtz free energy is incorporated in a logarithmic form to minimize the effects of series truncation. The new theoretical approach, including discrete summation over lattice nodes coordinates, is compared critically against the classical virial expansion of the Helmholtz free energy for the dipolar hard sphere fluid; the main differences between the Helmholtz free energy of SCLF and dipolar hard sphere fluid are discussed. The theoretical results for the Helmholtz free energy, the magnetization, and the initial magnetic susceptibility of the SCLF are compared against Molecular Dynamic simulation data. In all cases, theoretical predictions using logarithmic form of the Helmholtz free energy are seen to be superior, but they only have an applicability range of the effective dipolar coupling constant $λ_e < 1.5$. For highest values of $λ_e$, the structural transition of the magnetic dipoles in SCLF is observed in Molecular Dynamic simulation. It has been shown that for $λ_e \gtrsim 2$, an antiferromagnetic order appears in the system.