Multiple double-exchange mechanism by Mn$^{2+}$-doping in manganite compounds
Abstract
Double-exchange mechanisms in REAEMnO manganites (where RE is a trivalent rare-earth ion and AE is a divalent alkali-earth ion) relies on the strong exchange interaction between two Mn and Mn ions through interfiling oxygen 2p states. Nevertheless, the role of RE and AE ions has ever been considered "silent" with respect to the DE conducting mechanisms. Here we show that a new path for DE-mechanism is indeed possible by partially replacing the RE-AE elements by Mn-ions, in La-deficient LaMnO thin films. X-ray absorption spectroscopy demonstrated the relevant presence of Mn ions, which is unambiguously proved to be substituted at La-site by Resonant Inelastic X-ray Scattering. Mn is proved to be directly correlated to the enhanced magneto-transport properties because of an additional hopping mechanism trough interfiling Mn-ions, theoretically confirmed by calculations within the effective single band model. The very idea to use Mn both as a doping element and an ions electronically involved in the conduction mechanism, has never been foreseen, revealing a new phenomena in transport properties of manganites. More important, such a strategy might be also pursed in other strongly correlated materials.
Cite
@article{arxiv.1006.5811,
title = {Multiple double-exchange mechanism by Mn$^{2+}$-doping in manganite compounds},
author = {P. Orgiani and A. Galdi and C. Aruta and V. Cataudella and G. De Filippis and C. A. Perroni and V. Marigliano Ramaglia and R. Ciancio and N. B. Brookes and M. Moretti Sala and G. Ghiringhelli and L. Maritato},
journal= {arXiv preprint arXiv:1006.5811},
year = {2015}
}
Comments
6 pages, 5 figures