Title :
Magnetotransport properties of Ba
MnRuO
and LaBaMnRuO
Author :
Pillai, S. Savitha ; Jammalamadaka, S. Narayana ; Santhosh, P.N.
Author_Institution :
Dept. of Phys., Indian Inst. of Technol. Madras, Chennai
fDate :
6/1/2007 12:00:00 AM
Abstract :
The structural, magnetic, and transport properties of double perovskites Ba2MnRuO6 (BMRO) and LaBaMnRuO6 (LBMRO) have been investigated. Rietveld analysis of powder x-ray diffraction data show that BMRO adopts 9R rhombohedral structure with space group R3macrm while the partial doping of Ba by La leads the structure to orthorhombic with Pbnm space group. Structural as well as magnetic studies revealed that Ru ions are tetravalent in both compounds. The superexchange interactions between Mn3+ (t2g 3eg 1)-O-Ru4+ (t2g 4) lead to a ferromagnetic ordering in LBMRO. The direct metal-metal interactions are to be invoked to understand the weak magnetic nature of BMRO. Transport studies reveal that both samples have insulating behavior with variable range hopping type of conduction. Magnetoresistance (MR) measurements show a positive magnetoresistance (~ 5 % for 1 T) in BMRO, which is not significantly varying within the temperature range measured while LBMRO exhibit a negative magneto resistance (~ 25% for 1 T at 80 K), which increases while decreasing the temperature
Keywords :
X-ray diffraction; barium compounds; colossal magnetoresistance; ferromagnetic materials; hopping conduction; lanthanum compounds; manganese compounds; mixed valence compounds; space groups; superexchange interactions; Ba2MnRuO6; LaBa2MnRuO6; Rietveld analysis; double perovskites; ferromagnetic ordering; metal-metal interactions; negative magnetoresistance; positive magnetoresistance; powder X-ray diffraction; rhombohedral structure; space group; superexchange interactions; variable range hopping conduction; Doping; Electrical resistance measurement; Magnetic analysis; Magnetic properties; Magnetoresistance; Powders; Temperature distribution; Temperature measurement; X-ray diffraction; X-ray imaging; Colossal magnetoresistance (CMR); double perovskites; superexchange interactions;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2007.892568