Magnetization reversal and nanoscopic magnetic-phase separation in La1−xSrxCoO3
نویسندگان
چکیده
The doped perovskite cobaltite La1−xSrxCoO3 LSCO has been advanced as a model system for studying intrinsic magnetic phase separation. We have employed a first-order reversal curve FORC method to probe the amount of irreversible switching in bulk polycrystalline LSCO as a function of Sr doping, field cooling procedure, and temperature. The value of the FORC distribution is used as a measure of the extent of irreversible switching. For x 0.18, the small values of and its ridgelike distribution along local coercivity Hc and zero bias Hb are characteristic of noninteracting single domain particles. This is consistent with the formation of an array of isolated nanoscopic ferromagnetic clusters, as observed in previous work. For x 0.18, the much larger values of , the tilting of its distribution towards negative bias field, and the emergence of regions with negative are consistent with increased long-range ferromagnetic ordering. The FORC distributions display little dependence on the cooling procedure. With increasing temperature, the fraction of irreversible switching determined from the FORC distribution follows closely the ferromagnetic phase fraction measured by La nuclear magnetic resonance. Our results furthermore demonstrate that the FORC method is a valuable first-pass characterization tool for magnetic-phase separation.
منابع مشابه
Magnetic reversal in nanoscopic ferromagnetic rings
We present a theory of magnetization reversal due to thermal fluctuations in thin submicron-scale rings composed of soft magnetic materials. The magnetization in such geometries is more stable against reversal than that in thin needles and other geometries, where sharp ends or edges can initiate nucleation of a reversed state. The two-dimensional ring geometry also allows us to evaluate the eff...
متن کاملPolaron Effects on the Stark Shift of a Bound Polaron in Finite Quantum Wells
We performed electron spin and nuclear magnetic resonance and inelastic neutron scattering measurements of a single crystal of lightly hole-doped La1−xSrxCoO3, x ∼ 0.002 in order to establish the origin of a surprisingly strong magnetization due to a very small Sr doping. The data provide experimental evidence for the creation at low temperatures of extended spin clusters with a large spin mult...
متن کاملX-ray absorption fine structure studies on La1-xSrxCoO3
10B, 9A/2004G086 X-ray absorption fine structure studies on La1-xSrxCoO3 U. Manju, D. Matsumura, T. Ohta, D. D. Sarma* Solid state and Structural Chemistry Unit, Indian Institute of Science, Bangalore560 012, India. Deptartment of Chemistry, Graduate School of Science, University of Tokyo, 7-3-1 Hongo, Bunkyoku, Tokyo 113. Synchrotron Radiation Research Center, Japan Atomic Energy Institute, Mi...
متن کاملPhase separation , thermal history and magnetic behaviour of Sr doped
High-resolution transmission electron microscopy observations and magnetic ac susceptibility measurements have been carried out to study the changes in the magnetic properties of La1−xSrxCoO3 samples (x 0.3) processed at different annealing temperatures, ranging from 1273 to 1573 K. Although neutron diffraction excludes the coexistence of distinct phases with different chemical composition, roo...
متن کاملSensing properties of perovskite oxide La1-xSrxCoO3-δ obtained by using pulsed laser deposition
La1-xSrxCoO3-δ belongs to the group of perovskite oxides of the ABO3 structure, with a trivalent rare earth in the A position (La) and a trivalent metal ion in the B position (Co). Doping with divalent Srions at the trivalent La-positions creates oxygen vacancies which give the oxide catalytic properties to H2O2. However, the conventional techniques which are used to prepare this oxide such as ...
متن کامل