Shahbazi Kowsar, Kim Joo-Von, Nembach Hans T, Shaw Justin M, Bischof Andreas, Rossell Marta D, Jeudy Vincent, Moore Thomas A, Marrows Christopher H
School of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, United Kingdom.
Centre for Nanoscience and Nanotechnology (C2N), CNRS, Université Paris-Sud, Université Paris-Saclay, 91120 Palaiseau, France.
Phys Rev B. 2019;99. doi: 10.1103/PhysRevB.99.094409.
The interfacial Dzyaloshinskii-Moriya interaction (DMI) is important for chiral domain walls (DWs) and for stabilizing magnetic skyrmions. We study the effects of introducing increasing thicknesses of Ir, from zero to 2 nm, into a Pt/Co/Ta multilayer between the Co and Ta layers. There is a marked increase in magnetic moment, due to the suppression of the dead layer at the interface with Ta, but the perpendicular anisotropy is hardly affected. All samples show a universal scaling of the field-driven DW velocity across the creep and depinning regimes. Asymmetric bubble expansion shows that DWs in all of the samples have the left-handed Néel form. The value of in-plane magnetic field at which the creep velocity shows a minimum drops markedly on the introduction of Ir, as does the frequency shift of the Stokes and anti-Stokes peaks in Brillouin light scattering (BLS) measurements. Despite this qualitative similarity, there are quantitative differences in the DMI strength given by the two measurements, with BLS often returning higher values. Many features in bubble expansion velocity curves do not fit simple models commonly used, namely a lack of symmetry about the velocity minimum and no difference in velocities at high in-plane fields. These features are explained by the use of a new model in which the depinning field is allowed to vary with in-plane field in a way determined from micromagnetic simulations. This theory shows that the velocity minimum underestimates the DMI field, consistent with BLS giving higher values. Our results suggest that the DMI at an Ir/Co interface has the same sign as the DMI at a Pt/Co interface.
界面Dzyaloshinskii-Moriya相互作用(DMI)对于手性畴壁(DWs)和稳定磁斯格明子很重要。我们研究了在Co和Ta层之间的Pt/Co/Ta多层膜中引入厚度从0到2 nm逐渐增加的Ir的影响。由于抑制了与Ta界面处的死层,磁矩有显著增加,但垂直各向异性几乎不受影响。所有样品在蠕变和脱钉区域均表现出场驱动DW速度的通用标度。不对称气泡膨胀表明所有样品中的DWs都具有左手Néel形式。引入Ir后,蠕变速度出现最小值时的面内磁场值显著下降,布里渊光散射(BLS)测量中斯托克斯和反斯托克斯峰的频移也如此。尽管有这种定性的相似性,但两种测量给出的DMI强度存在定量差异,BLS通常给出更高的值。气泡膨胀速度曲线中的许多特征不符合常用的简单模型,即在速度最小值处缺乏对称性以及在高面内磁场下速度没有差异。这些特征通过使用一种新模型来解释,在该模型中,脱钉场允许以从微磁模拟确定的方式随面内磁场变化。该理论表明速度最小值低估了DMI场,这与BLS给出更高值一致。我们的结果表明Ir/Co界面处的DMI与Pt/Co界面处的DMI具有相同的符号。