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- W2113662852 abstract "The Mössbauer effect has been used to study five specimens of the disordered system Ni1–xZnxFe2O4 for 0.6 ≤ x ≤ 0.95 in applied magnetic fields of 5 and 9T. The spectra have been analysed in terms of a single hyperfine field resulting from A site Fe ions and several fields due to B site Fe ions. It is shown that some of the B site ions have their spin moments reversed at high Zn concentrations. The cation distribution is shown to follow the formula (ZnxFe1–x) (Fe1+xNi1–x)O4. The A site Fe magnetic moments are found to be collinear with large applied magnetic fields, whereas all the B site moments exhibit some degree of canting. The B site canting angles are found to increase with Zn concentration. Increasing the applied magnetic field decreases the canting angles of the normal B site ions for all the specimens studied. L'effet Mössbauer a été utilisé pourétudier einq échantillons du système désordonné Ni1–xZnxFe2O4 pour 0,6 ≤ x ≤ 0,95 dans des champs magnétiques de 5 et de 9T. Les spectres ont été analysés au moyen d'un seul champ hyperfin résultant des ions Fe des sites A et de plusieurs champs dǔs aux ions Fe des sites. B. On montre qu'une partie des ions aux sites ont leur moments renversés aux haute concentrations de Zn. La distribution des cations suit la formule (ZnxFe1–x) (Fe1+xNi1–x)O4. Dans des champs magnétiques intenses les moments mangétiques des ions Fe aux sites A sont colinéaires tandis que les moments aux sites B sont légèrement inclinés. Nous trouvons que le décalage des sites B augmente avec la concentration de Zn. L'augmentation du champ magnétique diminue les angles de décalage des sites B normals dans tous les échantillons étudiés." @default.
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- W2113662852 date "1973-10-16" @default.
- W2113662852 modified "2023-09-27" @default.
- W2113662852 title "A high field mössbauer study of nickel—zinc ferrites" @default.
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- W2113662852 doi "https://doi.org/10.1002/pssa.2210190235" @default.
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