Wang He, Shen Lvkang, Duan Tingzhi, Ma Chunrui, Cao Cuimei, Jiang Changjun, Lu Xiaoli, Sun Huiyuan, Liu Ming
School of Physics Science and Technology , Lanzhou University , Lanzhou 730000 , China.
State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology School of Microelectronics , Xidian University , Xi'an 710071 , China.
ACS Appl Mater Interfaces. 2019 Jun 26;11(25):22677-22683. doi: 10.1021/acsami.9b04877. Epub 2019 Jun 13.
High-quality flexible magnetic oxide thin films have promoted a wide range of potential applications in spintronic devices due to their unique physical properties. To obtain the optimized microwave magnetism for future all-oxide-based spintronic applications, high-quality oxide materials with excellent epitaxial quality as well as specific bending properties related to ferromagnetic resonance are high in demand. Here, (001)-oriented LaSrMnO epitaxial thin films with different thicknesses have been grown and subsequently transferred onto flexible poly(dimethylsiloxane) substrates. The microwave magnetisms of these film samples have been investigated under various bending states. Under bending, the ferromagnetic resonance lineshape of the film gradually transits from a single mode to a superposition of multimodes, possibly because of the uneven distribution of magnetization in the bending film at X-band. This phenomenon is more apparent when the direction of the applied magnetic field goes close to the out-of-plane of the film. Hence, an integration of invariable and continuous tuning of ferromagnetic resonance field under various mechanical bending can be achieved in one same sample by just tuning the direction of the applied magnetic field, which reveals that the flexible LaSrMnO thin films have huge potential in the applications in future flexible multifunctional devices.
高质量的柔性磁性氧化物薄膜因其独特的物理性质,在自旋电子器件中推动了广泛的潜在应用。为了获得用于未来全氧化物基自旋电子应用的优化微波磁性,对具有优异外延质量以及与铁磁共振相关的特定弯曲特性的高质量氧化物材料有很高的需求。在此,已经生长了不同厚度的(001)取向的LaSrMnO外延薄膜,并随后转移到柔性聚二甲基硅氧烷衬底上。对这些薄膜样品在各种弯曲状态下的微波磁性进行了研究。在弯曲状态下,薄膜的铁磁共振线形逐渐从单模转变为多模叠加,这可能是由于在X波段弯曲薄膜中磁化强度分布不均匀所致。当外加磁场方向接近薄膜的面外方向时,这种现象更为明显。因此,通过仅调整外加磁场方向,在同一个样品中就可以实现各种机械弯曲下铁磁共振场的不变和连续调谐,这表明柔性LaSrMnO薄膜在未来柔性多功能器件的应用中具有巨大潜力。