Magnetic Reconstructions in B-site Doped Manganites
arXiv:1512.07746 · doi:10.1063/1.4939644
Abstract
The magnetic nature of the B-site dopants controls the magnetic phases in B-site doped manganites REAEMnBO. Different B-site dopants of equal valence, doped into the same reference manganite, lead to different magnetic phases at low temperature, which can not be explained using the valence change scenario. We focus on trivalent B-site dopants in CE-CO-OO-I manganites at half-filling to study the role of magnetic interactions between the B-site dopants and the neighboring Mn-sites by using a two-orbital double-exchange model including super-exchange interactions, Jahn-Teller lattice distortions and substitutional disorder in two dimensions. We show that the magnetic reconstructions around the B-site dopants due to the modified double-exchange and super-exchange interactions control the phase competition in B-site doped manganites.
References in corpus (9)
- Formation of finite antiferromagnetic clusters and the effect of electronic phase separation in Pr{_0.5}Ca{_0.5}Mn{_0.975}Al{_0.025}O{_3}
- Coulomb Interactions and Nanoscale Electronic Inhomogeneities in Manganites
- The Distinct Effects of Homogeneous Weak Disorder and Dilute Strong Scatterers on Phase Competetion in the Manganites
- Non-magnetic B-site Impurities Induce Ferromagnetic Tendencies in CE Manganites
- Exploiting B Site Disorder for Phase Control in the Manganites
- Domain Formation and Orbital Ordering Transition in a Doped Jahn-Teller Insulator
- Interfacial Magnetism in Manganite Superlattices
- Combined Effect of Bond- and Potential-Disorder in Half-Doped Manganites
- Dopant-dependent impact of Mn-site doping on the critical-state manganites: R0.6Sr0.4MnO3 (R=La, Nd, Sm, and Gd)