Suppressed magnetization in LaCaMnO/YBaCuO superlattices
arXiv:cond-mat/0507123 · doi:10.1103/PhysRevB.72.140407
Abstract
We studied the magnetic properties of LaCaMnO / YBaCuO superlattices. Magnetometry showed that with increasing YBaCuO layer thickness the saturation magnetization per LaCaMnO layer decreases. From polarized neutron reflectometry we determined that this magnetization reduction is due to an inhomogenous magnetization depth profile arising from the suppression of magnetization near the LaCaMnO / YBaCuO interface. Electron energy loss spectroscopy indicates an increased 3d band occupation of the Mn atoms in the LaCaMnO layers at the interface. Thus, the suppression of ferromagnetic order at the LaCaMnO / YBaCuO interface is most likely due to charge transfer between the two materials.
4 pages, 4 figures, submitted to Phys. Rev. B
Cited by in corpus (10)
- Emergent properties hidden in plane view: Strong electronic correlations at oxide interfaces
- Long-range transfer of electron-phonon coupling in oxide superlattices
- Nanoscale magnetic structure of ferromagnet/antiferromagnet manganite multilayers
- Competition between covalent bonding and charge transfer at complex-oxide interfaces
- Depth profile of the ferromagnetic order in a YBaCuO / LaCaMnO superlattice on a LSAT substrate: a polarized neutron reflectometry study
- Elucidating proximity magnetism through polarized neutron reflectometry and machine learning
- Induced Ferromagnetism at BiFeO3/YBa2Cu3O7 Interfaces
- Controlling the strength of ferromagnetic order in YBaCuO/LaCaMnO multilayers
- Superconductor to Mott insulator transition in YBaCuO/LaCaMnO heterostructures
- Effects of Strain and Buffer Layer on Interfacial Magnetization in SrCrReO Films Determined by Polarized Neutron Reflectometry