Polaronic metal phases in LaSrMnO uncovered by inelastic neutron and x-ray scattering
arXiv:1510.01600 · doi:10.1103/PhysRevB.93.045112
Abstract
Among colossal magnetoresistive manganites the prototypical ferromagnetic manganite LaSrMnO has a relatively small magnetoresistance, and has been long assumed to have only weak electron-lattice coupling. Here we report that LaSrMnO has strong electron-phonon coupling: Our neutron and x-ray scattering experiments show strong softening and broadening of transverse acoustic phonons on heating through the Curie temperature T = 350 K. Simultaneously, we observe two phases where metallic resistivity and polarons coexist. The ferromagnetic polaronic metal phase between 200 K and T is characterized by quasielastic scattering from dynamic CE-type polarons with the relatively short lifetime of . This scattering is greatly enhanced above T in the paramagnetic polaronic metal phase. Our results suggest that the strength of magnetoresistance in manganites scales with the inverse of polaron lifetime, not the strength of electron-phonon coupling.
References in corpus (1)
Cited by in corpus (8)
- Evidence for a nematic phase in LaSrNiO
- Spin wave damping arising from phase coexistence below in colossal magnetoresistive LaCaMnO
- Damping and softening of transverse acoustic phonons in colossal magnetoresistive LaCaMnO and LaSrMnO
- Interacting chains of orbital polarons in "Colossal" magnetoresistive La1-xSrxMnO3 revealed by spin and lattice dynamics
- A Langevin approach to lattice dynamics in a charge ordered polaronic system
- Polaronic correlations and phonon renormalization in La1-xSrxMnO3 (x = 0.2, 0.3)
- Strongly anharmonic collective modes in a coupled electron-phonon-spin problem
- Direct observation of Jahn-Teller critical dynamics at a charge-order Verwey transition