Turkin Yaroslav V, Pugach Nataliya
HSE University, Moscow 101000, Russia.
Vernadsky Crimean Federal University, Simferopol 295007.
Beilstein J Nanotechnol. 2023 Feb 21;14:233-239. doi: 10.3762/bjnano.14.22. eCollection 2023.
The main goal of the present work is the description of the dynamics of spin current and induced magnetization inside a superconducting film S that is in contact with a ferromagnetic insulator layer FI. Spin current and induced magnetization are calculated not only at the interface of the S/FI hybrid structure, but also inside the superconducting film. The new and interesting predicted effect is the frequency dependence of the induced magnetization with a maximum appearing at high temperatures. It is also shown that the increase of the magnetization precession frequency can drastically change the spin distribution of quasiparticles at the S/FI interface.
本工作的主要目标是描述与铁磁绝缘体层FI接触的超导薄膜S内部的自旋电流动力学和感应磁化强度。不仅在S/FI混合结构的界面处,而且在超导薄膜内部,都计算了自旋电流和感应磁化强度。新的且有趣的预测效应是感应磁化强度的频率依赖性,在高温下会出现最大值。还表明,磁化进动频率的增加会极大地改变S/FI界面处准粒子的自旋分布。