论文标题
PD/Nife的热产生的旋转电压的增强$ _2 $ o $ _4 $接口,晶格匹配的基板上的增长
Enhancement in Thermally Generated Spin Voltage at Pd/NiFe$_2$O$_4$ Interfaces by the Growth on Lattice-Matched Substrates
论文作者
论文摘要
从纵向几何形状中的自旋Seebeck效应测量值展示了外观上Xial磁性Nife的有效自旋注入到PD层中的薄膜。 Nife $ _2 $ o $ _4 $电影(60 nm至1 $μ$ m)是由脉冲激光沉积在等式尖晶石Mgal Mgal上生长的对于较薄的薄膜($ \ leq $ 330 nm),观察到旋转的Seebeck电压的增加,而晶格不匹配降低,这与吉尔伯特抑制型参数的降低非常相关,这是根据Ferromagnetic Resonance测量值确定的。高分辨率透射电子显微镜研究表明,在晶状体不匹配下降的薄膜中,对抗相对边界和界面缺陷会大大减少引起应变 - 浮肿的界面缺陷。这突出了减少尖晶石铁氧体中结构缺陷以进行有效旋转注射的重要性。进一步表明,依赖角度的旋转塞贝克效应测量为探测膜中存在的平面磁各向异性提供了定性方法。
Efficient spin injection from epitaxial ferrimagnetic NiFe$_2$O$_4$ thin films into a Pd layer is demonstrated via spin Seebeck effect measurements in the longitudinal geometry. The NiFe$_2$O$_4$ films (60 nm to 1 $μ$m) are grown by pulsed laser deposition on isostructural spinel MgAl$_2$O$_4$, MgGa$_2$O$_4$, and CoGa$_2$O$_4$ substrates with lattice mismatch varying between 3.2% and 0.2%. For the thinner films ($\leq$ 330 nm), an increase in the spin Seebeck voltage is observed with decreasing lattice mismatch, which correlates well with a decrease in the Gilbert damping parameter as determined from ferromagnetic resonance measurements. High resolution transmission electron microscopy studies indicate substantial decrease of antiphase boundary and interface defects that cause strain-relaxation, i.e., misfit dislocations, in the films with decreasing lattice mismatch. This highlights the importance of reducing structural defects in spinel ferrites for efficient spin injection. It is further shown that angle-dependent spin Seebeck effect measurements provide a qualitative method to probe for in-plane magnetic anisotropies present in the films.