Temperature and magnetic field dependent magnetic properties and critical behavior of some electron doped rare earth manganites
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Abstract
This thesis deals with the results of experimental investigation on temperature and
newlinemagnetic field dependent magnetic properties and critical behavior of some electron doped
newlinemanganites using experimental magnetization data. A series of polycrystalline electron-doped rare
newlineearth manganites Ca0.85R0.15MnO3 (R = Dy, Sm, Nd) are synthesized and a systematic
newlineinvestigation of structural properties, magnetic properties and critical behavior of these materials
newlineis carried out. Structural parameters of all these samples are determined by analyzing
newlinecorresponding x-ray diffraction profile based on Rietveld refinement method using the profile
newlineanalysis program FULLPROF. For measuring magnetization both VSM magnetometer and
newlineSQUID magnetometer have been used. Magnetic properties and critical behavior of these
newlinecompounds are studied based on dc magnetization data. DC magnetizations have been measured
newlinein both zero field cooled (ZFC) and Field cooled (FC) sequences . Critical behaviors of these
newlinematerials are studied based on isothermal magnetization data using the techniques like Arrott plot,
newlinemodified Arrott plot (MAP) method, Kouvel-Fisher method and critical isotherm analysis. All the
newlinesynthesized materials exhibit almost same qualitative behavior but small variation of magnetic
newlineproperties and critical behavior are observed with the variation of the substituting rare earth
newlineelement. The effects of Griffiths phase and magnetic relaxation behavior on the magnetocaloric
newlineeffect are studied.
newlineTemperature and Magnetic field dependent magnetization properties of electron doped
newlinepolycrystalline sample Ca0.85Dy0.15MnO3(CDMO) prepared by solid state reaction method have
newlinebeen studied. The sample undergoes ferromagnetic to paramagnetic phase transition at about
newline111K. From the study of magnetic properties in terms of Arrott plots it is observed that the phase
newlinetransition is of 2nd order.
newline