Evidence of extreme domain wall speeds under ultrafast optical excitation
arXiv:2303.16131 · doi:10.1103/PhysRevLett.131.256702
Abstract
Time-resolved ultrafast EUV magnetic scattering was used to test a recent prediction of >10 km/s domain wall speeds by optically exciting a magnetic sample with a nanoscale labyrinthine domain pattern. Ultrafast distortion of the diffraction pattern was observed at markedly different timescales compared to the magnetization quenching. The diffraction pattern distortion shows a threshold-dependence with laser fluence, not seen for magnetization quenching, consistent with a picture of domain wall motion with pinning sites. Supported by simulations, we show that a speed of 66 km/s for highly curved domain walls can explain the experimental data. While our data agree with the prediction of extreme, non-equilibrium wall speeds locally, it differs from the details of the theory, suggesting that additional mechanisms are required to fully understand these effects.
5 pages, 4 figures; Supplemental Material: 9 pages, 9 figures
References in corpus (6)
- Super-Diffusive Spin-Transport as a Mechanism of Ultrafast Demagnetization
- - model for local and nonlocal spin dynamics in laser-excited magnetic heterostructures
- Walker breakdown with a twist: Dynamics of multilayer domain walls and skyrmions driven by spin-orbit torque
- Anisotropic Ultrafast Spin Dynamics in Epitaxial Cobalt
- Mesoscopic magnetic systems: from fundamental properties to devices
- Element selective ultrafast magnetization dynamics of hybrid Stoner-Heisenberg magnets
Cited by in corpus (7)
- Ultrafast demagnetization in ferromagnetic materials: Origins and progress
- High-speed antiferromagnetic domain walls driven by coherent spin waves
- Pseudo-spectral Landau-Lifshitz description of magnetization dynamics
- Laser-driven resonant soft-X-ray scattering for probing picosecond dynamics of nanometre-scale order
- Contact solitons as spin pistons in one-dimensional ferromagnetic channels
- Revealing domain wall stability during ultrafast demagnetization
- Spatio-temporal migration of antiferromagnetic domain walls in Sr2IrO4