Grelier Matthieu, Godel Florian, Vecchiola Aymeric, Collin Sophie, Bouzehouane Karim, Fert Albert, Cros Vincent, Reyren Nicolas
Unité Mixte de Physique, CNRS, Thales, Université Paris-Saclay, 91767, Palaiseau, France.
Nat Commun. 2022 Nov 11;13(1):6843. doi: 10.1038/s41467-022-34370-x.
Three-dimensional spin textures emerge as promising quasi-particles for encoding information in future spintronic devices. The third dimension provides more malleability regarding their properties and more flexibility for potential applications. However, the stabilization and characterization of such quasi-particles in easily implementable systems remain a work in progress. Here we observe a three-dimensional magnetic texture that sits in the interior of magnetic thin films aperiodic multilayers and possesses a characteristic ellipsoidal shape. Interestingly, these objects that we call skyrmionic cocoons can coexist with more standard tubular skyrmions going through all the multilayer as evidenced by the existence of two very different contrasts in room temperature magnetic force microscopy. The presence of these novel skyrmionic textures as well as the understanding of their layer resolved chiral and topological properties have been investigated by micromagnetic simulations. Finally, we show that the skyrmionic cocoons can be electrically detected using magneto-transport measurements.
三维自旋纹理作为未来自旋电子器件中编码信息的有前途的准粒子出现。第三维在其特性方面提供了更大的可塑性,在潜在应用方面提供了更大的灵活性。然而,在易于实现的系统中稳定和表征此类准粒子仍在进行中。在这里,我们观察到一种三维磁性纹理,它位于磁性薄膜非周期性多层膜的内部,具有特征性的椭球形。有趣的是,我们称之为斯格明子茧的这些物体可以与贯穿所有多层膜的更标准的管状斯格明子共存,室温磁力显微镜中存在两种非常不同的对比度就证明了这一点。通过微磁模拟研究了这些新型斯格明子纹理的存在以及对其层分辨手性和拓扑性质的理解。最后,我们表明可以使用磁输运测量对斯格明子茧进行电学检测。