Ultrafast demagnetization dynamics in Ni: role of electron correlations
arXiv:1911.01147 · doi:10.1103/PhysRevLett.125.017202
Abstract
Experimental observations of the ultrafast (less than 50 fs) demagnetization of Ni have so far defied theoretical explanations particularly since its spin-flipping time is much less than that resulting from spin-orbit and electron-lattice interactions. Through the application of an approach that benefits from spin-flip time-dependent density-functional theory and dynamical mean-field theory, we show that proper inclusion of electron correlations and memory (time-dependence of electron-electron interaction) effects leads to demagnetization at the femtosecond scale, in good agreement with experimental observations. Furthermore, our calculations reveal that this ultrafast demagnetization results mainly from spin-flip transitions from occupied to unoccupied orbitals implying a dynamical reduction of exchange splitting. These conclusions are found to be valid for a wide range of laser pulse amplitudes. They also pave the way for ab initio investigations of ultrafast charge and spin dynamics in a variety of quantum materials in which electron correlations may play a definitive role.
References in corpus (6)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Continuous-time Monte Carlo methods for quantum impurity models
- Super-Diffusive Spin-Transport as a Mechanism of Ultrafast Demagnetization
- Local magnetic moments in iron and nickel at ambient and Earth's core conditions
- Electronic structure and effects of dynamical electron correlation in ferromagnetic bcc-Fe, fcc-Ni and antiferromagnetic NiO
- Ultrafast reduction of exchange splitting in ferromagnetic nickel
Cited by in corpus (24)
- Non-Adiabatic Approximations in Time-Dependent Density Functional Theory: Progress and Prospects
- Ab initio Ultrafast Spin Dynamics in Solids
- Ultrafast demagnetization in ferromagnetic materials: Origins and progress
- The interplay of local electron correlations and ultrafast spin dynamics in fcc Ni
- Ab initio investigation of laser-induced ultrafast demagnetization of L1 FePt: Intensity dependence and importance of electron coherence
- Origins of electromagnetic radiation from spintronic terahertz emitters: A time-dependent density functional theory plus Jefimenko equations approach
- A Snapshot of Time-Dependent Density-Functional Theory
- Ultrafast magnetization reversal in ferromagnetic spin-valves: an s-d model perspective
- Charge and spin current pumping by ultrafast demagnetization dynamics
- Ultrafast charge dynamics and photoluminescence in bilayer MoS2
- Magnetization dynamics with time-dependent spin-density functional theory: significance of exchange-correlation torques
- Element selective ultrafast magnetization dynamics of hybrid Stoner-Heisenberg magnets
- The signature of charge dependent directed flow observables by electromagnetic fields in heavy ion collisions
- Generation of Phonons with Angular Momentum During Ultrafast Demagnetization
- Strong ultrafast demagnetization due to the intraband transitions
- Effect of magnetic field on jet transport coefficient
- Laser-induced forces on atoms during ultrafast demagnetization
- Nonclassical dynamics of Néel vector and magnetization accompanied by THz and high-harmonic radiation from ultrafast-light-driven NiO antiferromagnet insulator
- Global hyperon polarization and effects of decay feeddown
- Electronic mechanism of sub-100-fs demagnetization induced by a femtosecond light pulse
- Global polarization and spin alignment measurements
- Charmonium in electromagnetic and vortical fields
- Spin alignment of Quarkonia: A Possible Probe of Deconfined QCD matter in Pb+Pb Collisions at TeV
- Improved quark coalescence model for spin alignments of vector mesons