论文标题
人造方冰中远程偶极相互作用的签名
Signatures of long range dipolar interactions in artificial square ice
论文作者
论文摘要
分析磁场消除人造方形冰的磁性结构因子,观察到与预测方冰模型的定性偏差。结合了微磁性和蒙特卡洛模拟,我们证明了这些偏差表明纳米磁体之间存在相互作用的纳米磁体之间存在相互作用,这些纳米磁体超出了最近的邻居。包括进一步的邻居,平方冰模型中的偶极样耦合,我们发现需要前七个或八个耦合强度来半定量地重现实验测量的磁性结构因子的主要特征。还提出了一种替代性,更现实的数值场景,其中冰条件略有失调。在这种情况下,仅当考虑到进一步的邻居耦合时,实验磁结构因子中证明的特征才得到很好的描述。我们的结果表明,远距离偶极相互作用并未完全在磁场化的人造方形冰中全面洗涤,并且由于影响冰歧管内或附近的磁相关性而不能被忽略。
Analyzing the magnetic structure factor of a field demagnetized artificial square ice, qualitative deviations from what would predict the square ice model are observed. Combining micromagnetic and Monte Carlo simulations, we demonstrate that these deviations signal the presence of interactions between nanomagnets that extend beyond nearest neighbors. Including further neighbor, dipolar-like couplings in the square ice model, we find that the first seven or eight coupling strengths are needed to reproduce semi-quantitatively the main features of the magnetic structure factor measured experimentally. An alternative, more realistic numerical scenario is also proposed in which the ice condition is slightly detuned. In that case as well, the features evidenced in the experimental magnetic structure factor are only well-described when further neighbor couplings are taken into account. Our results show that long range dipolar interactions are not totally washed out in a field demagnetized artificial square ice, and cannot be neglected as they impact the magnetic correlations within or at the vicinity of the ice manifold.