Light-induced ultrafast spin transport in multilayer metallic films originates from sp - d spin exchange coupling

Author:

Chen Zhanghui123ORCID,Luo Jun-Wei13ORCID,Wang Lin-Wang12ORCID

Affiliation:

1. Institute of Semiconductors, Chinese Academy of Sciences, P.O. Box 912, Beijing 100083, China.

2. Materials Sciences Division, Lawrence Berkeley National Laboratory, One Cyclotron Road, Mail Stop 50F, Berkeley, CA 94720, USA.

3. University of Chinese Academy of Sciences, No.1 Yanqihu East Rd, Huairou District, Beijing 101408, China.

Abstract

Ultrafast interaction between the femtosecond laser pulse and the magnetic metal provides an efficient way to manipulate the magnetic states of matter. Numerous experimental advancements have been made on multilayer metallic films in the last two decades. However, the underlying physics remains unclear. Here, relying on an efficient ab initio spin dynamics simulation algorithm, we revealed the physics that can unify the progress in different experiments. We found that light-induced ultrafast spin transport in multilayer metallic films originates from the sp - d spin-exchange interaction, which can induce an ultrafast, large, and pure spin current from ferromagnetic metal to nonmagnetic metal without charge carrier transport. The resulting trends of spin demagnetization and spin flow are consistent with most experiments. It can explain a variety of ultrafast light-spin manipulation experiments with different systems and different pump-probe technologies, covering a wide range of work in this field.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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