DocumentCode :
1474950
Title :
Effects of the Cu Doping on Critical Behavior of {\\rm La}_{0.7}{\\rm Ca}_{0.3}{\\rm MnO}_{3}
Author :
Phan, T.L. ; Thanh, P.Q. ; Sinh, N.H. ; Zhang, Y.D. ; Yu, S.C.
Author_Institution :
Dept. of Phys., Chungbuk Nat. Univ., Cheongju, South Korea
Volume :
48
Issue :
4
fYear :
2012
fDate :
4/1/2012 12:00:00 AM
Firstpage :
1293
Lastpage :
1296
Abstract :
We have studied the influence of the Cu-doping on the critical properties of a polycrystalline sample of La0.7Ca0.3Mn0.95Cu0.05O3 prepared by solid-state reaction. Analyses of static magnetization data in the vicinity of the ferromagnetic-paramagnetic phase transition based on the modified Arrott plot reveal critical parameters of TC ≈ 197.3 K, β = 0.49 ± 0.03 and γ = 1.04 ± 0.04. These parameters are in good agreement with a magnetic equation of state M(H, ε) = εβf±(H/εβ+γ), where ε = (T - TC)/TC (the reduced temperature), f+ for T >; TC and f_ for T <; TC. Comparing with theoretical models, the critical exponents in our case are close to those expected for the mean-field theory. This reflects that the Cu doping leads to the second-order phase transition in La0.7Ca0.3Mn0.95Cu0.05O3 while the parent compound of La0.7Ca0.3MnO exhibits the first-order phase transition. Such the phenomenon is assigned to changes in structural parameters, Mn3+/Mn4+ ratio, and magnetic interaction mechanisms caused by Cu dopants.
Keywords :
calcium compounds; critical exponents; doping; equations of state; ferromagnetic materials; ferromagnetic-paramagnetic transitions; lanthanum compounds; magnetisation; paramagnetic materials; La0.7Ca0.3Mn0.95Cu0.05O3; critical exponents; critical parameters; critical properties; doping effects; ferromagnetic-paramagnetic phase transition; first-order phase transition; magnetic equation of state; magnetic interaction mechanisms; mean-field theory; modified Arrott plot; polycrystalline sample; second-order phase transition; solid-state reaction; static magnetization; structural parameters; Copper; Doping; Ions; Magnetic properties; Magnetization; Materials; Mathematical model; Critical behavior; magnetic phase transition; perovskite manganites;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2174202
Filename :
6172372
Link To Document :
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