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Frustrations and Phase Transitions in Low-Dimensional Magnetic Systems

机译:低维磁系统中的挫折和相位过渡

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We studied magnetic orderings and frustrations on ID chain and 2D lattices: square, triangular, kagome, and hexagonal in the Ising, 3-state Potts and standard 4-state Potts models. The spins interrelate with one another via the nearest-neighbor, the next-nearest-neighbor or the third-neighbor exchange interactions and by an external magnetic field. For problem solving we mainly calculated the entropy and specific heat using the rigorous analytical solutions for maximum eigenvalue of Kramers-Wannier transfer-matrix and exploiting computer simulation, par excellence, by Wang-Landau algorithm. Whether a system is ordered or frustrated is related to the signs and values of exchange interactions. An external magnetic field may both favor the ordering of a system and create frustrations. With the help of calculations of the entropy, the specific heat and magnetic parameters, we obtained the points and ranges of frustrations, the frustration fields and the phase transition points. The results obtained also show that the same exchange interactions my either be competing or noncompeting which depends on the topology of a lattice.
机译:我们研究了ID链和2D格子上的磁性排序和挫折:正方形,三角形,kagome和六角形,3州Potts和标准4状态Potts模型。旋转通过最近的邻居,下邻邻或第三邻邻交互和外部磁场相互关联。对于解决问题,我们主要计算使用严格的分析解决方案来计算克拉默 - 多尔传输矩阵的最大特征值和利用计算机模拟,卓越的王兰算法。系统是否有序或令人沮丧与交换交互的迹象和值相关。外部磁场可以赞成系统的排序并产生挫折。借助于熵的计算,具体的热量和磁性参数,我们获得了挫折的点和范围,挫折,令人沮丧的场和相位过渡点。所获得的结果还表明,相同的交换相互作用我的竞争或非竞争,这取决于格子的拓扑。

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