Simon Fraser University, Department of Physics, Burnaby, BC, V5A 1S6, Canada.
Sci Rep. 2017 Jul 7;7(1):4861. doi: 10.1038/s41598-017-05030-8.
We report on magnetic damping of exchange coupled, polycrystalline Py(NiFe)|Fe and Fe|Py bilayers, prepared by sputter-deposition on an amorphous 3 nm Ta seed layer. FMR measurements are performed on varying thicknesses of the individual Py and Fe layers while keeping the total bilayer structure thickness fixed. When Fe is grown directly on Ta, there is large magnetic inhomogeneity and damping. However, when a Py layer is deposited between Fe and Ta, both the magnetic inhomogeneity and damping significantly decrease even if Fe is covered by Ta. The intrinsic damping of the Ta|Py|Fe film can be further lowered by increasing the Fe to Py ratio. SQUID measurements show a linear increase in saturation magnetization with increasing ratio of Fe to Py. A combination of in-plane and out-of-plane X-ray diffraction measurements show that Py is textured along the 〈111〉 directions and Fe is textured along the 〈110〉, with Fe texture significantly improving if it is deposited on Ta|Py instead of Ta. By improving the texture of Fe by introducing a thin Py layer between Fe and Ta, one can grow Fe thin films with zero in-plane anisotropy, tunable magnetic moment, and low magnetic damping, approaching that of the best single crystal Fe.
我们报告了交换耦合的多晶 Py(NiFe)|Fe 和 Fe|Py 双层膜的磁阻尼,这些双层膜是通过溅射沉积在非晶态 3nm Ta 种子层上制备的。在保持双层结构总厚度不变的情况下,我们对不同厚度的单个 Py 和 Fe 层进行了 FMR 测量。当 Fe 直接生长在 Ta 上时,存在较大的磁各向异性和阻尼。然而,当在 Fe 和 Ta 之间沉积一层 Py 时,即使 Fe 被 Ta 覆盖,磁各向异性和阻尼都会显著降低。通过增加 Fe 与 Py 的比例,可以进一步降低 Ta|Py|Fe 薄膜的本征阻尼。SQUID 测量显示饱和磁化强度随 Fe 与 Py 比例的线性增加。面内和面外 X 射线衍射测量的组合表明,Py 沿〈111〉方向织构化,Fe 沿〈110〉方向织构化,如果 Fe 沉积在 Ta|Py 上而不是 Ta 上,Fe 的织构化会显著改善。通过在 Fe 和 Ta 之间引入一层薄的 Py 层来改善 Fe 的织构,可以生长出具有零面内各向异性、可调磁矩和低磁阻尼的 Fe 薄膜,接近最佳单晶 Fe 的性能。