DocumentCode :
3602418
Title :
Magnetocaloric Effect and Critical Behavior in a Disordered Ferromagnet La0.7Sr0.3Mn0.9Ti0.1O3
Author :
Ho, T.A. ; Duy-Truong Quach ; Thanh, T.D. ; Ho, T.O. ; Phan, M.H. ; Phan, T.L. ; Yu, S.C.
Author_Institution :
Dept. of Phys., Chungbuk Nat. Univ., Cheongju, South Korea
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
The critical phenomena around the Curie temperature (TC) of a polycrystalline La0.7Sr0.3Mn0.9Ti0.1O3 were studied based on magnetic field and temperature dependence of magnetization. Using the modified Arrott plot method, we determined the critical parameters TC≈234 K, β = 0.372 ± 0.012, γ = 1.171 ± 0.112, and δ = 4.15 ± 0.01. With these critical values, the M(H) data of the sample fall onto two universal branches of the scaling function M(H, ε) = |ε|β f±(H/|ε|β+γ), where ε = (T - TC)/TC, and f+ for T > TC and f- for T <; TC. This pointed to the existence of a short-range ferromagnetic (FM) order in La0.7Sr0.3Mn0.9Ti0.1O3, which is attributed to FM clusters persisting in a wide temperature range, even above TC. Electron-spin-resonance spectra affirmed the presence of the FM clusters at temperatures as high as T = Tmin (≈1.3 TC), above which the sample is completely paramagnetic. Based on the M(H) data, we also calculated the magnetic-entropy change (ΔSm), which reached a maximum (|ΔSmax| ≈ 4.3 J/kg · K) around the TC, corresponding to the relative cooling power of ~200 J/kg for a field change ΔH = 50 kOe. A linear relationship |ΔSmax(H)| ∝ Hn is achieved with a local exponent n = 0.59 determined from n = 1+ (β - 1)/(β + γ), indicative of a short-range FM system.
Keywords :
Curie temperature; ferromagnetic materials; lanthanum compounds; magnetisation; magnetocaloric effects; paramagnetic materials; paramagnetic resonance; short-range order; strontium compounds; Curie temperature; La0.7Sr0.3Mn0.9Ti0.1O3; cooling power; critical phenomena; disordered ferromagnetic material; electron-spin-resonance spectra; magnetic field; magnetic-entropy; magnetization temperature dependence; magnetocaloric effect; modified Arrott plot method; paramagnetic material; scaling function; short-range ferromagnetic order; Frequency modulation; Ions; Magnetic field measurement; Magnetic resonance; Magnetic separation; Magnetization; Temperature measurement; Critical behavior; Electron Spin Resonance; Magnetocaloric effect; Ti-doped La0.7Sr0.3MnO3; electron-spin resonance (ESR); magnetocaloric effect (MCE);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2436383
Filename :
7111314
Link To Document :
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