Optical pump-terahertz emission probe of ultrafast magnetization dynamics

C Chen Huang (Catalonia Institute for Energy Research-IREC, Sant Adrià de Besòs, Barcelona 08930, Spain) Z Zhangshun Li (THz Technology Innovation Research Institute, Terahertz Spectrum and Imaging Technology Cooperative Innovation Center, Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology) B Bo Lu Y Yifan Wang M Miao Cai (Clinical Epidemiology Center, Research and Development Service, Veterans Affairs (VA) St. Louis Health Care System, St. Louis) L Lin Xi H Huiping Zhang Z Zuanming Jin (Terahertz Technology Innovation Research Institute, Terahertz Spectrum and Imaging Technology Cooperative Innovation Center, Shanghai Key Lab of Modern Optical System)

Abstract

Understanding spin dynamics on ultrafast timescales offers not only fundamental insights into the coupling of both electrons and phonons with spins but also opportunities for faster and more efficient spintronic devices. However, reliable access to ultrafast spin dynamics in materials and devices under realistic device-operation conditions remains a challenge. Here, we demonstrate a spectroscopic method of optical pump-terahertz (THz) emission (OPTE), which gives direct access to the ultrafast demagnetization and re-magnetization dynamics in a contact-free method under ambient conditions. The observation time window is not limited by the pulse width of THz radiation emitted by the sample. We measure the ultrafast spin dynamics in a laser-excited Fe monolayer. Our measurements disentangle distinct components originating from (i) the ultrafast magnetization quenching that occurs in less than 0.5 ps and (ii) the fast and slow magnetization recoveries that correspond to the spin–lattice coupling and heat diffusion from the sample into the substrate/surroundings, respectively. The OPTE can be a platform to probe and optimize the performance of magneto-optical recording materials and THz emission applications.

Article Details

Volume / Issue Vol. 163, Issue 22
Published December 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (8)

C

Chen Huang

Catalonia Institute for Energy Research-IREC, Sant Adrià de Besòs, Barcelona 08930, Spain

Z

Zhangshun Li

THz Technology Innovation Research Institute, Terahertz Spectrum and Imaging Technology Cooperative Innovation Center, Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology

B

Bo Lu

Y

Yifan Wang

M

Miao Cai

Clinical Epidemiology Center, Research and Development Service, Veterans Affairs (VA) St. Louis Health Care System, St. Louis

L

Lin Xi

H

Huiping Zhang

Z

Zuanming Jin

Terahertz Technology Innovation Research Institute, Terahertz Spectrum and Imaging Technology Cooperative Innovation Center, Shanghai Key Lab of Modern Optical System