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Measurements of ultrafast spin-profiles and spin-diffusion properties in the domain wall area at a metal/ferromagnetic film interface

机译:在金属/铁磁膜界面处畴壁区域的超快自旋轮廓和自旋扩散特性的测量

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摘要

Exciting a ferromagnetic material with an ultrashort IR laser pulse is known to induce spin dynamics by heating the spin system and by ultrafast spin diffusion processes. Here, we report on measurements of spin-profiles and spin diffusion properties in the vicinity of domain walls in the interface region between a metallic Al layer and a ferromagnetic Co/Pd thin film upon IR excitation. We followed the ultrafast temporal evolution by means of an ultrafast resonant magnetic scattering experiment in surface scattering geometry, which enables us to exploit the evolution of the domain network within a 1/e distance of 3 nm to 5 nm from the Al/FM film interface. We observe a magnetization-reversal close to the domain wall boundaries that becomes more pronounced closer to the Al/FM film interface. This magnetization-reversal is driven by the different transport properties of majority and minority carriers through a magnetically disordered domain network. Its finite lateral extension has allowed us to measure the ultrafast spin-diffusion coefficients and ultrafast spin velocities for majority and minority carriers upon IR excitation.
机译:已知用超短IR激光脉冲激发铁磁材料会通过加热自旋系统和超快自旋扩散过程来诱导自旋动力学。在这里,我们报告了在红外激发下,金属铝层和铁磁Co / Pd薄膜之间的界面区域中畴壁附近的自旋轮廓和自旋扩散特性的测量结果。我们通过表面散射几何学中的超快共振磁散射实验跟踪了超快速度的时间演化,这使我们能够利用Al / FM薄膜界面在3 nm至5 nm的1 / e距离内域网络的演化。 。我们观察到靠近畴壁边界的磁化反转在靠近Al / FM膜界面时变得更加明显。这种磁化反转是由多数和少数载流子通过无序磁畴网络的不同传输特性驱动的。其有限的横向延伸使我们能够测量红外激发后大多数和少数载流子的超快自旋扩散系数和超快自旋速度。

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