Dynamics of Phase Separated States in the Double Exchange Model
arXiv:1904.05252 · doi:10.1103/PhysRevB.103.115137
Abstract
We present extensive large-scale dynamical simulations of phase-separated states in the double exchange model. These inhomogeneous electronic states that play a crucial role in the colossal magnetoresistance phenomenon are composed of ferromagnetic metallic clusters embedded in an antiferromagnetic insulating matrix. We compute the dynamical structure factor of these nanoscale textures using an efficient real-space formulation of coupled spin and electron dynamics. Dynamical signatures of the various underlying magnetic structures are identified. At small hole doping, the structure factor exhibits a dominating signal of magnons from the background Néel order and localized modes from magnetic polarons. A low-energy continuum due to large-size ferromagnetic clusters emerges at higher doping levels. Implications for experiments on magnetoresistive manganites are discussed.
11 pages, 4 figures
References in corpus (15)
- The Kernel Polynomial Method
- Novel magnetic orderings in the kagome Kondo-lattice model
- Monte Carlo Study of Doping Change and Disorder Effect on Double Exchange Ferromagnetism
- Hour-glass magnetic excitations induced by nanoscopic phase separation in cobalt oxides LaSrCoO
- Incommensurate spiral order from double exchange interactions
- Magnons in Ferromagnetic Metallic Manganites
- Order N Monte Carlo Algorithm for Fermion Systems Coupled with Fluctuating Adiabatical Fields
- Semiclassical dynamics of spin density waves
- The Truncated Polynomial Expansion Monte Carlo Method for Fermion Systems Coupled to Classical Fields: A Model Independent Implementation
- Non--Heisenberg Spin Dynamics of Double-Exchange Ferromagnets with Coulomb Repulsion
- Disorder, cluster spin glass, and hour-glass spectra in striped magnetic insulators
- Dynamical properties of a three-dimensional diluted Heisenberg model
- Spin wave damping arising from phase coexistence below in colossal magnetoresistive LaCaMnO
- A Langevin approach to lattice dynamics in a charge ordered polaronic system
- Strongly anharmonic collective modes in a coupled electron-phonon-spin problem
Cited by in corpus (4)
- Arrested phase separation in double-exchange models: machine-learning enabled large-scale simulation
- Nonequilibrium dynamics of suppression, revival, and loss of charge order in a laser pumped electron-phonon system
- Spatio-temporal dynamics of voltage-induced resistance transition in the double-exchange model
- Machine learning dynamics of phase separation in correlated electron magnets