Safeer C K, Nsibi Mohamed-Ali, Nath Jayshankar, Gabor Mihai Sebastian, Yang Haozhe, Joumard Isabelle, Auffret Stephane, Gaudin Gilles, Miron Ioan-Mihai
Univ. Grenoble Alpes CNRS, CEA, Grenoble INP, SPINTEC, Grenoble, France.
CIC nanoGUNE BRTA, 20018, Donostia-San Sebastian, Basque Country, Spain.
Nat Commun. 2022 Mar 7;13(1):1192. doi: 10.1038/s41467-022-28815-6.
Friction plays an essential role in most physical processes that we experience in our everyday life. Examples range from our ability to walk or swim, to setting boundaries of speed and fuel efficiency of moving vehicles. In magnetic systems, the displacement of chiral domain walls (DW) and skyrmions (SK) by Spin Orbit Torques (SOT), is also prone to friction. Chiral damping (α), the dissipative counterpart of the Dzyaloshinskii Moriya Interaction (DMI), plays a central role in these dynamics. Despite experimental observation, and numerous theoretical studies confirming its existence, the influence of chiral damping on DW and SK dynamics has remained elusive due to the difficulty of discriminating from DMI. Here we unveil the effect that α has on the flow motion of DWs and SKs driven by current and magnetic field. We use a static in-plane field to lift the chiral degeneracy. As the in-plane field is increased, the chiral asymmetry changes sign. When considered separately, neither DMI nor α can explain the sign reversal of the asymmetry, which we prove to be the result of their competing effects. Finally, numerical modelling unveils the non-linear nature of chiral dissipation and its critical role for the stabilization of moving SKs.
摩擦力在我们日常生活中所经历的大多数物理过程中都起着至关重要的作用。例子涵盖了从我们行走或游泳的能力,到设定行驶车辆的速度和燃油效率的界限。在磁性系统中,自旋轨道扭矩(SOT)对手性畴壁(DW)和斯格明子(SK)的位移也容易产生摩擦。手性阻尼(α)是Dzyaloshinskii-Moriya相互作用(DMI)的耗散对应物,在这些动力学中起着核心作用。尽管有实验观察以及众多理论研究证实了它的存在,但由于难以与DMI区分开来,手性阻尼对DW和SK动力学的影响仍然难以捉摸。在这里,我们揭示了α对由电流和磁场驱动的DW和SK的流动运动的影响。我们使用一个静态面内场来消除手性简并。随着面内场的增加,手性不对称性改变符号。单独考虑时,DMI和α都无法解释不对称性的符号反转,我们证明这是它们竞争效应的结果。最后,数值模拟揭示了手性耗散的非线性性质及其对移动SK的稳定化的关键作用。