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Título
All-optical non-linear chiral ultrafast magnetization dynamics driven by circularly polarized magnetic fields
Autor(es)
Palabras clave
Ultrafast dynamics
Non-linear dynamics
Chiral behavior
Fecha de publicación
2023-08
Citación
Sánchez-Tejerina, L., Martín-Hernández, R., Yanes, R., Plaja, L., López-Díaz, L., & Hernández-García, C. (2023). All-optical non-linear chiral ultrafast magnetization dynamics driven by circularly polarized magnetic fields. High Power Laser Science and Engineering, 1-9. doi:10.1017/hpl.2023.71
Resumen
Ultrafast laser pulses provide unique tools to manipulate magnetization dynamics at femtosecond timescales, where the interaction of the electric field usually dominates over the magnetic field. Recent proposals using structured laser beams have demonstrated the possibility to produce regions where intense oscillating magnetic fields are isolated from the electric field. In these conditions, we show that technologically feasible Tesla-scale circularly polarized high-frequency magnetic fields induce purely precessional nonlinear magnetization dynamics. This fundamental result not only opens an avenue in the study of laser-induced ultrafast magnetization dynamics, but also sustains technological implications as a route to promote all-optical non-thermal magnetization dynamics both at shorter timescales—towards the subfemtosecond regime— and at THz frequencies.
URI
ISSN
2095-4719
DOI
10.1017/hpl.2023.71
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