English

Ultrafast high-harmonic nanoscopy of magnetization dynamics

Optics 2022-01-05 v1 Accelerator Physics Instrumentation and Detectors

Abstract

Light-induced magnetization changes, such as all-optical switching, skyrmion nucleation, and intersite spin transfer, unfold on temporal and spatial scales down to femtoseconds and nanometers, respectively. Pump-probe spectroscopy and diffraction studies indicate that spatio-temporal dynamics may drastically affect the non-equilibrium magnetic evolution. Yet, direct real-space magnetic imaging on the relevant timescale has remained challenging. Here, we demonstrate ultrafast high-harmonic nanoscopy employing circularly polarized high-harmonic radiation for real-space imaging of femtosecond magnetization dynamics. We observe the reversible and irreversible evolution of nanoscale spin textures following femtosecond laser excitation. Specifically, we map quenched magnetic domains and localized spin structures in Co/Pd multilayers with a sub-wavelength spatial resolution down to 16 nm, and strobosocopically trace the local magnetization dynamics with 40 fs temporal resolution. Our approach enables the highest spatio-temporal resolution of magneto-optical imaging to date. Facilitating ultrafast imaging with an extreme sensitivity to various microscopic degrees of freedom expressed in chiral and linear dichroism, we envisage a wide range of applications spanning magnetism, phase transitions, and carrier dynamics.

Keywords

Cite

@article{arxiv.2011.05450,
  title  = {Ultrafast high-harmonic nanoscopy of magnetization dynamics},
  author = {Sergey Zayko and Ofer Kfir and Michael Heigl and Michael Lohmann and Murat Sivis and Manfred Albrecht and Claus Ropers},
  journal= {arXiv preprint arXiv:2011.05450},
  year   = {2022}
}

Comments

14 pages, 4 figures

R2 v1 2026-06-23T20:03:54.666Z