Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5491109 | Journal of Magnetism and Magnetic Materials | 2017 | 21 Pages |
Abstract
Magnetic and thermodynamic properties of polycrystalline multiferroic Bi0.65La0.35Fe0.5Sc0.5O3 synthesized under high-pressure and high-temperature conditions are reported. Magnetic properties were studied using a SQUID magnetometer technique over the temperature range of 5â300Â K in magnetic fields up to H=10Â kOe. The field dependent magnetization M(H) was measured in magnetic fields up to 50Â kOe at different temperatures up to 230Â K after zero-field cooling procedure. A long-range magnetic ordering of the AFM type with a weak FM contribution occurs below the Néel temperature TN ~237Â K. Magnetic hysteresis loops taken below TN show a huge coercive field up to Hc ~10Â kOe. A strong effect of magnetic field on the magnetic properties of the compound has been found. Derivative of the initial magnetization curves demonstrates a temperature-dependent anomaly in fields of H=15â25Â kOe. Besides, an anomaly of the temperature dependent zero-field cooled magnetization measured in magnetic fields of 6â7Â kOe has been found. Origin of both anomalies is associated with inhomogeneous magnetic state of the compound. The heat capacity has been measured from 2Â K up to room temperature and a significant contribution from the magnon excitations at low temperatures has been detected. From the low-temperature heat capacity, an anisotropy gap of the magnon modes of the order 3.7Â meV and Debye temperature TD=189Â K have been determined.
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
E.L. Fertman, A.V. Fedorchenko, D.D. Khalyavin, A.N. Salak, A. Baran, V.A. Desnenko, O.V. Kotlyar, E. Äižmár, A. Feher, E.S. Syrkin, A.I. Vaisburd, N.M. Olekhnovich, A.V. Pushkarev, Yu.V. Radyush, A. Stanulis, A. Kareiva,