MultidirectionalSpin-Orbit Torque MagnetizationDynamics in beyond Room Temperature Van der Waals Magnet Devices
Artikel i vetenskaplig tidskrift, 2026

van der Waals (vdW) magnets with room-temperature ferromagnetism offer exciting opportunities for energy-efficient spintronic devices, yet their magnetization dynamics remain largely unexplored despite their importance for high-speed memory technologies. Here, we investigate spin-orbit torque phenomena in the room-temperature vdW magnet (Co0.15Fe0.85)(5)GeTe2 (CFGT)/Pt heterostructure using spin-torque ferromagnetic resonance and second-harmonic Hall measurements. Alongside a conventional in-plane spin Hall conductivity of 3.68 & times; 10(5) (& hbar;/2e) (Omega m)(-1), we identify a sizable out-of-plane component of -0.33 & times; 10(5) (& hbar;/2e) (Omega m)(-1) that generates unconventional damping-like torques. Density functional theory and Monte Carlo simulations suggest that this torque can originate from interface-induced spin reorientation arising from a modified magnetic anisotropy landscape and strongly enhanced Dzyaloshinskii-Moriya interaction at the CFGT/Pt interface. The combination of low effective magnetization (0.321 T), moderate Gilbert damping (0.027), and efficient multidirectional torques highlights vdW magnets as promising platforms for next-generation spintronic devices.

ST-FMR

2D materials

magnetization dynamics

second harmonic Hall

spin-orbit torque (SOT)

vdW magnets

room temperature

Författare

Bing Zhao

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Lakhan Bainsla

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Soheil Ershadrad

Linköpings universitet

Prabhav N. Sumant

Chalmers, Mikroteknologi och nanovetenskap

Roselle Ngaloy

Chalmers, Mikroteknologi och nanovetenskap, Kvantteknologi

Johanna Rosen

Linköpings universitet

Biplab Sanyal

Uppsala universitet

Johan Akerman

Göteborgs universitet

Saroj Prasad Dash

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Nano Letters

1530-6984 (ISSN) 1530-6992 (eISSN)

Vol. In Press

2D Heterostructure Non-volatile Spin Memory Technology (2DSPIN-TECH)

Europeiska kommissionen (EU) (EC/HE/101135853), 2023-12-01 -- 2026-11-30.

2D material-baserad teknologi för industriella applikationer (2D-TECH)

VINNOVA (2024-03852), 2023-11-01 -- 2029-12-31.

VINNOVA (2019-00068), 2020-05-01 -- 2024-12-31.

GKN Aerospace (2D-tech), 2021-01-01 -- 2024-12-31.

Ämneskategorier (SSIF 2025)

Den kondenserade materiens fysik

DOI

10.1021/acs.nanolett.6c02494

PubMed

42446294

Mer information

Senast uppdaterat

2026-07-27