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http://dx.doi.org/10.4283/JKMS.2002.12.1.014

Crystal Structure and Magnetic Properties of Iron Doped La-Sr-Mn-O  

Ahn, Geun-Young (국민대학교 자연과학대학 나노·전자물리학과)
Shim, In-Bo (국민대학교 자연과학대학 나노·전자물리학과)
Kim, Sam-Jin (국민대학교 자연과학대학 나노·전자물리학과)
Kim, Chul-Sung (국민대학교 자연과학대학 나노·전자물리학과)
Abstract
The iron-doped perovskite La$_{0.67}$Sr$_{0.33}$Mn$_{0.99}$$^{57}$Fe$_{0.01}$O$_3$compound has been studied by x-ray diffraction, Mossbauer spectroscopy, and vibrating sample magnetometry. The single phase of the polycrystalline La$_{0.67}$Sr$_{0.33}$Mn$_{0.99}$$^{57}$Fe$_{0.01}$O$_3$powder has been prepared by a waterbased solgel method. Crystalline La$_{0.67}$Sr$_{0.33}$Mn$_{0.99}$$^{57}$Fe$_{0.01}$O$_3$was a rombohedral structure with lattice parameters a$_{0}$=5.480 $AA$, $alpha$=60.259$^{circ}$. Mossbauer spectra of La$_{0.67}$Sr$_{0.3}$/Mn$_{0.99}$$^{57}$Fe$_{0.01}$O$_3$have been taken at various temperatures ranging from 20 to 400 K. As the temperature increases toward the Curie temperature, T$_{c}$=375 K, the Mossbauer spectra show line broadening and the difference between the 1,6 and 3,4 linewidths is caused by the anisotropic hyperfine field fluctuation. The anisotropic field fluctuation of +H (P$_{+}$=0.80) is greater than -H (P$_{-}$=0.20). We calculated that the anisotropy energy was 124.01 erg/cm$^3$for T=150 K which is associated with the large line broadening.
Keywords
Sol-gel; VSM; Mossbauer; CMR; Sol-gel; VSM; Mossbauer; Anisotropic hyperfine field fluctuation;
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