Charge and Orbital Ordering in Pr0.5 Ca0.5 MnO3 Studied by 17O NMR
A. Yakubovskii, A. Trokiner, S. Verkhovskii, A. Gerashenko, D. Khomskii
Abstract
The charge and orbital ordering in Pr0.5 Ca0.5 MnO3 is studied for the first time by 17O NMR. This local probe is sensitive to spin, charge and orbital correlations. Two transitions exist in this system: the charge and orbital ordering at TCO = 225 K and the antiferromagnetic (AF) transition at TN = 170 K. Both are clearly seen in the NMR spectra measured in a magnetic field of 7T. Above TCO there exists only one NMR line with a large isotropic shift, whose temperature dependence is in accordance with the presence of ferromagnetic (FM) correlations. This line splits into two parts below TCO, which are attributed to different types of oxygen in the charge/orbital ordered state. The interplay of FM and AF spin correlations of Mn ions in the charge ordered state of Pr0.5 Ca0.5 MnO3 is considered in terms of the hole hopping motion that is slowed down with decreasing temperature. The developing fine structure of the spectra evidences, that there still exist charge-disordered regions at TCO > T > TN and that the static (t > 10-6s) orbital order is established only on approaching TN. The CE-type magnetic correlations develop gradually below TCO, so that at first the AF correlations between checkerboard ab-layers appear, and only at lower temperature - CE correlations within the ab-planes.
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