Alexandrakis Vasileios, Rodríguez-Aseguinolaza Iván, Anastasakos-Paraskevopoulos Dimitrios, Barandiarán Jose Manuel, Chernenko Volodymyr, Porro Jose Maria
Institute of Nanoscience and Nanotechology, National Center for Scientific Research "Demokritos", 15310 Agia Paraskevi, Greece.
Department of Electricity & Electronics, University of the Basque Country (UPV/EHU), 48080 Bilbao, Spain.
Nanomaterials (Basel). 2021 Aug 26;11(9):2188. doi: 10.3390/nano11092188.
Metamagnetic off-stoichiometric Heusler alloys are actively being investigated because of their great potential as magnetocaloric materials. These properties are intimately related to the nanoscale homogeneity of their magnetic properties, mainly due to a strong influence of the nature of the exchange interactions between Mn atoms on the magnetism of the alloys. In this work, a spontaneous exchange bias phenomenon on a Ni-Co-Mn-Sn metamagnetic Heusler sputtered film is presented and studied in detail. More particularly, a series of DC magnetization curves measured as a function of the temperature demonstrates that the system exhibits canonical spin glass-like features. After a careful study of the field-cooling and zero-field-cooling curves measured on this system, the existence of magnetic inhomogeneities is inferred, as a consequence of the competition between ferromagnetic and antiferromagnetic exchange interactions between Mn atoms. Further AC susceptibility measurements on this system demonstrate that the underlying exchange bias phenomenon can be attributed to a magnetic clusters model based on superferromagnetic-like interactions present in the film. These findings suggest that the spontaneous exchange bias exhibited by the studied system is a consequence of the formation of this superferromagnetic-like state.
亚磁化学计量比的赫斯勒合金因其作为磁热材料的巨大潜力而受到积极研究。这些特性与其磁性能的纳米级均匀性密切相关,这主要是由于锰原子间交换相互作用的性质对合金磁性有强烈影响。在这项工作中,我们详细介绍并研究了在镍 - 钴 - 锰 - 锡亚磁赫斯勒溅射薄膜上出现的自发交换偏置现象。更具体地说,一系列作为温度函数测量的直流磁化曲线表明,该系统呈现出典型的自旋玻璃状特征。在仔细研究该系统上测量的场冷和零场冷曲线后,由于锰原子间铁磁和反铁磁交换相互作用之间的竞争,推断出存在磁不均匀性。对该系统进一步的交流磁化率测量表明,潜在的交换偏置现象可归因于基于薄膜中存在的类似超铁磁相互作用的磁簇模型。这些发现表明,所研究系统表现出的自发交换偏置是这种类似超铁磁态形成的结果。