Gibert M, Viret M, Zubko P, Jaouen N, Tonnerre J-M, Torres-Pardo A, Catalano S, Gloter A, Stéphan O, Triscone J-M
Département de Physique de la Matière Quantique, University of Geneva, 24 Quai Ernest-Ansermet, 1211 Genève 4, Switzerland.
Service de Physique de l'Etat Condensé, CEA, CNRS, Université Paris-Saclay, CEA Saclay, 91191 Gif-sur-Yvette, France.
Nat Commun. 2016 Apr 15;7:11227. doi: 10.1038/ncomms11227.
Dimensionality is known to play an important role in many compounds for which ultrathin layers can behave very differently from the bulk. This is especially true for the paramagnetic metal LaNiO3, which can become insulating and magnetic when only a few monolayers thick. We show here that an induced antiferromagnetic order can be stabilized in the [111] direction by interfacial coupling to the insulating ferromagnet LaMnO3, and used to generate interlayer magnetic coupling of a nature that depends on the exact number of LaNiO3 monolayers. For 7-monolayer-thick LaNiO3/LaMnO3 superlattices, negative and positive exchange bias, as well as antiferromagnetic interlayer coupling are observed in different temperature windows. All three behaviours are explained based on the emergence of a (¼,¼,¼)-wavevector antiferromagnetic structure in LaNiO3 and the presence of interface asymmetry with LaMnO3. This dimensionality-induced magnetic order can be used to tailor a broad range of magnetic properties in well-designed superlattice-based devices.
众所周知,维度在许多化合物中起着重要作用,对于这些化合物,超薄层的行为可能与块体有很大不同。对于顺磁性金属LaNiO3来说尤其如此,当它只有几个单层厚时,就会变成绝缘且具有磁性。我们在此表明,通过与绝缘铁磁体LaMnO3的界面耦合,可以在[111]方向上稳定诱导反铁磁序,并用于产生取决于LaNiO3单层的确切数量的层间磁耦合性质。对于7个单层厚的LaNiO3/LaMnO3超晶格,在不同的温度窗口中观察到了负和正的交换偏置以及反铁磁层间耦合。基于LaNiO3中(¼,¼,¼)波矢反铁磁结构的出现以及与LaMnO3的界面不对称性,对这三种行为都进行了解释。这种维度诱导的磁序可用于在精心设计的基于超晶格的器件中定制广泛的磁性能。