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Ultrafast Laser-Induced Spin Dynamics in All-Semiconductor Ferromagnetic CrSBr-Phosphorene Heterostructures

  • Yiqi Huo
  • , Shuo Li
  • , Luo Yan
  • , Ningbo Li
  • , Jing Zou
  • , Junjie He
  • , Tong Zhou
  • , Thomas Frauenheim
  • , Sergei Tretiak
  • , Liujiang Zhou

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

Ultrashort laser pulses are extensively used for efficient manipulation of interfacial spin injection in two-dimensional van der Waals (vdW) heterostructures. However, physical processes accompanying the photoinduced spin transfer dynamics on the all-semiconductor ferromagnetic vdW heterostructure remain largely unexplored. Here, we present a computational investigation of the femtosecond laser pulse induced purely electron-mediated spin transfer dynamics at a time scale of less than 50 fs in a vdW heterostructure. The latter is composed of two semiconducting monolayers, namely, a ferromagnetic material CrSBr and a nonmagnetic phosphorene, and is denoted as CrSBr-P. We observe an ultrafast spin injection from the Cr atoms to the P atoms in a few femtoseconds by both optically induced and interfacial atom-mediated spin transfer effects. We also show that the demagnetization and spin transfer in the ferromagnetic-nonmagnetic CrSBr-P vdW heterostructure can be sensitively manipulated by laser pulses with different fluences. Our study offers a microscopic understanding of spin dynamics in these vdW heterostructures aiming toward their potential spintronic applications, which rely on optically controlled spin transfer processes.

Original languageEnglish
Pages (from-to)782-788
Number of pages7
JournalJournal of Physical Chemistry Letters
Volume16
Issue number3
DOIs
StatePublished - Jan 23 2025

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