Mesoscale magnetism at the grain boundaries in colossal magnetoresistive films
arXiv:cond-mat/0007169 · doi:10.1103/PhysRevB.63.020402
Abstract
We report the discovery of mesoscale regions with distinctive magnetic properties in epitaxial LaSrMnO films which exhibit tunneling-like magnetoresistance across grain boundaries. By using temperature-dependent magnetic force microscopy we observe that the mesoscale regions are formed near the grain boundaries and have a different Curie temperature (up to 20 K {\it higher}) than the grain interiors. Our images provide direct evidence for previous speculations that the grain boundaries in thin films are not magnetically and electronically sharp interfaces. The size of the mesoscale regions varies with temperature and nature of the underlying defect.
4 pages of text, 4 figures
Cited by in corpus (9)
- X-ray Microdiffraction Images of Antiferromagnetic Domain Evolution in Chromium
- Local Defect in Metallic Quantum Critical Systems
- Enhanced grain surface effect on magnetic properties of nanometric La0.7Ca0.3MnO3 manganite : Evidence of surface spin freezing of manganite nanoparticles
- A model for spin-polarized transport in perovskite manganite bi-crystal grain boundaries
- Strain control of superlattice implies weak charge-lattice coupling in LaCaMnO
- Magnetic Domain Walls in Single-Phase and Phase-Separated Double Exchange Systems
- Strain induced magnetic domain evolution and spin re-orientation transition in epitaxial manganite films
- High resolution determination of ferromagnetic metallic limit in epitaxial La1-xCaxMnO3 films on NdGaO3
- Images of a first order spin-reorientation phase transition in a metallic kagome ferromagnet