Ultrafast demagnetization in ferromagnetic materials: Origins and progress
arXiv:2412.12557 · doi:10.1016/j.physrep.2024.10.008
Abstract
Since the discovery of ultrafast demagnetization in Ni thin films in 1996, laser-induced ultrafast spin dynamics have become a prominent research topic in the field of magnetism and spintronics. This development offers new possibilities for the advancement of spintronics and magnetic storage technology. The subject has drawn a substantial number of researchers, leading to a series of research endeavors. Various models have been proposed to elucidate the physical processes underlying laser-induced ultrafast spin dynamics in ferromagnetic materials. However, the potential origins of these processes across different material systems and the true contributions of these different origins remain challenging in the realm of ultrafast spin dynamics. This predicament also hinders the development of spintronic terahertz emitters. In this review, we initially introduce the different experimental methods used in laser-induced ultrafast spin dynamics. We then systematically explore the magnetization precession process and present seven models of ultrafast demagnetization in ferromagnetic materials. Subsequently, we discuss the physical processes and research status of four ultrafast demagnetization origins (including spin-flipping, spin transport, non-thermal electronic distribution, and laser-induced lattice strain). Since attosecond laser technique and antiferromagnetic materials exhibit promising applications in ultrahigh-frequency spintronics, we acknowledge the emerging studies used by attosecond pules and studies on ultrafast spin dynamics in antiferromagnets, noting the significant challenges that need to be addressed in these burgeoning field.
References in corpus (17)
- Super-Diffusive Spin-Transport as a Mechanism of Ultrafast Demagnetization
- High domain wall velocities induced by current in ultrathin Pt/Co/AlOx wires with perpendicular magnetic anisotropy
- Dynamic approach for micromagnetics close to the Curie temperature
- Resonant Elastic Soft X-Ray Scattering
- Optical determination of the Neel vector in a CuMnAs thin-film antiferromagnet
- The influence of photon angular momentum on ultrafast spin dynamics in Nickel
- Theory of Thermal Relaxation of Electrons in Semiconductors
- Theory of Out-of-Equilibrium Ultrafast Relaxation Dynamics in Metals
- Magnetically brightened dark electron-phonon bound states in a van der Waals antiferromagnet
- Driving ferromagnets into a critical region of a magnetic phase diagram
- - model for local and nonlocal spin dynamics in laser-excited magnetic heterostructures
- Distinct Ultrafast Electronic and Magnetic Response in M-edge Magnetic Circular Dichroism
- Irreversible transformation of ferromagnetic ordered stripe domains in single-shot IR pump - resonant X-ray scattering probe experiments
- Ultrafast magnetization reversal in ferromagnetic spin-valves: an s-d model perspective
- Direct observation of ultrafast thermal and non-thermal lattice deformation of polycrystalline Aluminum film
- Analysis of ultrafast magnetization switching dynamics in exchange-coupled ferromagnet-ferrimagnet heterostructures
- Heisenberg representation of nonthermal ultrafast laser excitation of magnetic precessions